Literature DB >> 28515672

Measurement of prompt and nonprompt [Formula: see text] production in [Formula: see text] and [Formula: see text] collisions at [Formula: see text].

A M Sirunyan1, A Tumasyan1, W Adam2, E Asilar2, T Bergauer2, J Brandstetter2, E Brondolin2, M Dragicevic2, J Erö2, M Flechl2, M Friedl2, R Frühwirth2, V M Ghete2, C Hartl2, N Hörmann2, J Hrubec2, M Jeitler2, A König2, I Krätschmer2, D Liko2, T Matsushita2, I Mikulec2, D Rabady2, N Rad2, B Rahbaran2, H Rohringer2, J Schieck2, J Strauss2, W Waltenberger2, C-E Wulz2, O Dvornikov3, V Makarenko3, V Mossolov3, J Suarez Gonzalez3, V Zykunov3, N Shumeiko4, S Alderweireldt5, E A De Wolf5, X Janssen5, J Lauwers5, M Van De Klundert5, H Van Haevermaet5, P Van Mechelen5, N Van Remortel5, A Van Spilbeeck5, S Abu Zeid6, F Blekman6, J D'Hondt6, N Daci6, I De Bruyn6, K Deroover6, S Lowette6, S Moortgat6, L Moreels6, A Olbrechts6, Q Python6, K Skovpen6, S Tavernier6, W Van Doninck6, P Van Mulders6, I Van Parijs6, H Brun7, B Clerbaux7, G De Lentdecker7, H Delannoy7, G Fasanella7, L Favart7, R Goldouzian7, A Grebenyuk7, G Karapostoli7, T Lenzi7, A Léonard7, J Luetic7, T Maerschalk7, A Marinov7, A Randle-Conde7, T Seva7, C Vander Velde7, P Vanlaer7, D Vannerom7, R Yonamine7, F Zenoni7, F Zhang7, A Cimmino8, T Cornelis8, D Dobur8, A Fagot8, M Gul8, I Khvastunov8, D Poyraz8, S Salva8, R Schöfbeck8, M Tytgat8, W Van Driessche8, E Yazgan8, N Zaganidis8, H Bakhshiansohi9, C Beluffi9, O Bondu9, S Brochet9, G Bruno9, A Caudron9, S De Visscher9, C Delaere9, M Delcourt9, B Francois9, A Giammanco9, A Jafari9, M Komm9, G Krintiras9, V Lemaitre9, A Magitteri9, A Mertens9, M Musich9, K Piotrzkowski9, L Quertenmont9, M Selvaggi9, M Vidal Marono9, S Wertz9, N Beliy10, W L Aldá Júnior11, F L Alves11, G A Alves11, L Brito11, C Hensel11, A Moraes11, M E Pol11, P Rebello Teles11, E Belchior Batista Das Chagas12, W Carvalho12, J Chinellato12, A Custódio12, E M Da Costa12, G G Da Silveira12, D De Jesus Damiao12, C De Oliveira Martins12, S Fonseca De Souza12, L M Huertas Guativa12, H Malbouisson12, D Matos Figueiredo12, C Mora Herrera12, L Mundim12, H Nogima12, W L Prado Da Silva12, A Santoro12, A Sznajder12, E J Tonelli Manganote12, F Torres Da Silva De Araujo12, A Vilela Pereira12, S Ahuja13, C A Bernardes13, S Dogra13, T R Fernandez Perez Tomei13, E M Gregores13, P G Mercadante13, C S Moon13, S F Novaes13, Sandra S Padula13, D Romero Abad13, J C Ruiz Vargas13, A Aleksandrov14, R Hadjiiska14, P Iaydjiev14, M Rodozov14, S Stoykova14, G Sultanov14, M Vutova14, A Dimitrov15, I Glushkov15, L Litov15, B Pavlov15, P Petkov15, W Fang16, M Ahmad94, J G Bian17, G M Chen17, H S Chen17, M Chen17, Y Chen113, T Cheng17, C H Jiang17, D Leggat17, Z Liu17, F Romeo17, M Ruan17, S M Shaheen17, A Spiezia17, J Tao17, C Wang17, Z Wang175, H Zhang17, J Zhao17, Y Ban18, G Chen18, Q Li18, S Liu18, Y Mao18, S J Qian18, D Wang18, Z Xu18, C Avila19, A Cabrera19, L F Chaparro Sierra19, C Florez19, J P Gomez19, C F González Hernández19, J D Ruiz Alvarez19, J C Sanabria19, N Godinovic20, D Lelas20, I Puljak20, P M Ribeiro Cipriano20, T Sculac20, Z Antunovic21, M Kovac21, V Brigljevic22, D Ferencek22, K Kadija22, B Mesic22, T Susa22, A Attikis23, G Mavromanolakis23, J Mousa23, C Nicolaou23, F Ptochos23, P A Razis23, H Rykaczewski23, D Tsiakkouri23, M Finger24, M Finger24, E Carrera Jarrin25, Y Assran26, T Elkafrawy26, A Mahrous26, M Kadastik27, L Perrini27, M Raidal27, A Tiko27, C Veelken27, P Eerola28, J Pekkanen28, M Voutilainen28, J Härkönen29, T Järvinen29, V Karimäki29, R Kinnunen29, T Lampén29, K Lassila-Perini29, S Lehti29, T Lindén29, P Luukka29, J Tuominiemi29, E Tuovinen29, L Wendland29, J Talvitie30, T Tuuva30, M Besancon31, F Couderc31, M Dejardin31, D Denegri31, B Fabbro31, J L Faure31, C Favaro31, F Ferri31, S Ganjour31, S Ghosh55, A Givernaud31, P Gras31, G Hamel de Monchenault31, P Jarry31, I Kucher31, E Locci31, M Machet31, J Malcles31, J Rander31, A Rosowsky31, M Titov31, A Abdulsalam32, I Antropov32, F Arleo32, S Baffioni32, F Beaudette32, P Busson32, L Cadamuro32, E Chapon32, C Charlot32, O Davignon32, R Granier de Cassagnac32, M Jo32, S Lisniak32, P Miné32, M Nguyen32, C Ochando32, G Ortona32, P Paganini32, P Pigard32, S Regnard32, R Salerno32, Y Sirois32, T Strebler32, Y Yilmaz32, A Zabi32, A Zghiche32, J-L Agram33, J Andrea33, A Aubin33, D Bloch33, J-M Brom33, M Buttignol33, E C Chabert33, N Chanon33, C Collard33, E Conte33, X Coubez33, J-C Fontaine33, D Gelé33, U Goerlach33, A-C Le Bihan33, P Van Hove33, S Gadrat34, S Beauceron35, C Bernet35, G Boudoul35, C A Carrillo Montoya35, R Chierici35, D Contardo35, B Courbon35, P Depasse35, H El Mamouni35, J Fay35, S Gascon35, M Gouzevitch35, G Grenier35, B Ille35, F Lagarde35, I B Laktineh35, M Lethuillier35, L Mirabito35, A L Pequegnot35, S Perries35, A Popov35, D Sabes35, V Sordini35, M Vander Donckt35, P Verdier35, S Viret35, A Khvedelidze36, Z Tsamalaidze37, C Autermann38, S Beranek38, L Feld38, M K Kiesel38, K Klein38, M Lipinski38, M Preuten38, C Schomakers38, J Schulz38, T Verlage38, A Albert39, M Brodski39, E Dietz-Laursonn39, D Duchardt39, M Endres39, M Erdmann39, S Erdweg39, T Esch39, R Fischer39, A Güth39, M Hamer39, T Hebbeker39, C Heidemann39, K Hoepfner39, S Knutzen39, M Merschmeyer39, A Meyer39, P Millet39, S Mukherjee39, M Olschewski39, K Padeken39, T Pook39, M Radziej39, H Reithler39, M Rieger39, F Scheuch39, L Sonnenschein39, D Teyssier39, S Thüer39, V Cherepanov40, G Flügge40, B Kargoll40, T Kress40, A Künsken40, J Lingemann40, T Müller40, A Nehrkorn40, A Nowack40, C Pistone40, O Pooth40, A Stahl40, M Aldaya Martin41, T Arndt41, C Asawatangtrakuldee41, K Beernaert41, O Behnke41, U Behrens41, A A Bin Anuar41, K Borras41, A Campbell41, P Connor41, C Contreras-Campana41, F Costanza41, C Diez Pardos41, G Dolinska41, G Eckerlin41, D Eckstein41, T Eichhorn41, E Eren41, E Gallo41, J Garay Garcia41, A Geiser41, A Gizhko41, J M Grados Luyando41, A Grohsjean41, P Gunnellini41, A Harb41, J Hauk41, M Hempel41, H Jung41, A Kalogeropoulos41, O Karacheban41, M Kasemann41, J Keaveney41, C Kleinwort41, I Korol41, D Krücker41, W Lange41, A Lelek41, T Lenz41, J Leonard41, K Lipka41, A Lobanov41, W Lohmann41, R Mankel41, I-A Melzer-Pellmann41, A B Meyer41, G Mittag41, J Mnich41, A Mussgiller41, D Pitzl41, R Placakyte41, A Raspereza41, B Roland41, M Ö Sahin41, P Saxena41, T Schoerner-Sadenius41, S Spannagel41, N Stefaniuk41, G P Van Onsem41, R Walsh41, C Wissing41, V Blobel42, M Centis Vignali42, A R Draeger42, T Dreyer42, E Garutti42, D Gonzalez42, J Haller42, M Hoffmann42, A Junkes42, R Klanner42, R Kogler42, N Kovalchuk42, T Lapsien42, I Marchesini42, D Marconi42, M Meyer42, M Niedziela42, D Nowatschin42, F Pantaleo42, T Peiffer42, A Perieanu42, J Poehlsen42, C Scharf42, P Schleper42, A Schmidt42, S Schumann42, J Schwandt42, H Stadie42, G Steinbrück42, F M Stober42, M Stöver42, H Tholen42, D Troendle42, E Usai42, L Vanelderen42, A Vanhoefer42, B Vormwald42, M Akbiyik43, C Barth43, S Baur43, C Baus43, J Berger43, E Butz43, R Caspart43, T Chwalek43, F Colombo43, W De Boer43, A Dierlamm43, S Fink43, B Freund43, R Friese43, M Giffels43, A Gilbert43, P Goldenzweig43, D Haitz43, F Hartmann43, S M Heindl43, U Husemann43, I Katkov43, S Kudella43, H Mildner43, M U Mozer43, Th Müller43, M Plagge43, G Quast43, K Rabbertz43, S Röcker43, F Roscher43, M Schröder43, I Shvetsov43, G Sieber43, H J Simonis43, R Ulrich43, S Wayand43, M Weber136, T Weiler43, S Williamson43, C Wöhrmann43, R Wolf43, G Anagnostou44, G Daskalakis44, T Geralis44, V A Giakoumopoulou44, A Kyriakis44, D Loukas44, I Topsis-Giotis44, S Kesisoglou45, A Panagiotou45, N Saoulidou45, E Tziaferi45, I Evangelou46, G Flouris46, C Foudas46, P Kokkas46, N Loukas46, N Manthos46, I Papadopoulos46, E Paradas46, N Filipovic47, G Pasztor47, G Bencze48, C Hajdu48, D Horvath48, F Sikler48, V Veszpremi48, G Vesztergombi48, A J Zsigmond48, N Beni49, S Czellar49, J Karancsi49, A Makovec49, J Molnar49, Z Szillasi49, M Bartók50, P Raics50, Z L Trocsanyi50, B Ujvari50, J R Komaragiri51, S Bahinipati52, S Bhowmik52, S Choudhury52, P Mal52, K Mandal52, A Nayak52, D K Sahoo52, N Sahoo52, S K Swain52, S Bansal53, S B Beri53, V Bhatnagar53, R Chawla53, U Bhawandeep53, A K Kalsi53, A Kaur53, M Kaur53, R Kumar53, P Kumari53, A Mehta53, M Mittal53, J B Singh53, G Walia53, Ashok Kumar54, A Bhardwaj54, B C Choudhary54, R B Garg54, S Keshri54, S Malhotra54, M Naimuddin54, K Ranjan54, R Sharma54, V Sharma138, R Bhattacharya55, S Bhattacharya163, K Chatterjee55, S Dey55, S Dutt55, S Dutta55, S Ghosh55, N Majumdar55, A Modak55, K Mondal55, S Mukhopadhyay55, S Nandan55, A Purohit55, A Roy55, D Roy55, S Roy Chowdhury55, S Sarkar55, M Sharan55, S Thakur55, P K Behera56, R Chudasama57, D Dutta57, V Jha57, V Kumar57, A K Mohanty57, P K Netrakanti57, L M Pant57, P Shukla57, A Topkar57, T Aziz58, S Dugad58, G Kole58, B Mahakud58, S Mitra58, G B Mohanty58, B Parida58, N Sur58, B Sutar58, S Banerjee145, R K Dewanjee59, S Ganguly59, M Guchait59, Sa Jain59, S Kumar59, M Maity59, G Majumder59, K Mazumdar59, T Sarkar59, N Wickramage59, S Chauhan135, S Dube60, V Hegde60, A Kapoor60, K Kothekar60, S Pandey60, A Rane60, S Sharma60, S Chenarani61, E Eskandari Tadavani61, S M Etesami61, M Khakzad61, M Mohammadi Najafabadi61, M Naseri61, S Paktinat Mehdiabadi61, F Rezaei Hosseinabadi61, B Safarzadeh61, M Zeinali61, M Felcini62, M Grunewald62, M Abbrescia63, C Calabria63, C Caputo63, A Colaleo63, D Creanza63, L Cristella63, N De Filippis63, M De Palma63, L Fiore63, G Iaselli63, G Maggi63, M Maggi63, G Miniello63, S My63, S Nuzzo63, A Pompili63, G Pugliese63, R Radogna63, A Ranieri63, G Selvaggi63, A Sharma113, L Silvestris63, R Venditti63, P Verwilligen63, G Abbiendi64, C Battilana64, D Bonacorsi64, S Braibant-Giacomelli64, L Brigliadori64, R Campanini64, P Capiluppi64, A Castro64, F R Cavallo64, S S Chhibra64, G Codispoti64, M Cuffiani64, G M Dallavalle64, F Fabbri67, A Fanfani64, D Fasanella64, P Giacomelli64, C Grandi64, L Guiducci64, S Marcellini64, G Masetti64, A Montanari64, F L Navarria64, A Perrotta64, A M Rossi64, T Rovelli64, G P Siroli64, N Tosi64, S Albergo65, S Costa65, A Di Mattia65, F Giordano65, R Potenza65, A Tricomi65, C Tuve65, G Barbagli66, V Ciulli66, C Civinini66, R D'Alessandro66, E Focardi66, P Lenzi66, M Meschini66, S Paoletti66, L Russo66, G Sguazzoni66, D Strom66, L Viliani66, L Benussi67, S Bianco67, F Fabbri67, D Piccolo67, F Primavera67, V Calvelli68, F Ferro68, M R Monge68, E Robutti68, S Tosi68, L Brianza69, F Brivio69, V Ciriolo69, M E Dinardo69, S Fiorendi69, S Gennai69, A Ghezzi69, P Govoni69, M Malberti69, S Malvezzi69, R A Manzoni69, D Menasce69, L Moroni69, M Paganoni69, D Pedrini69, S Pigazzini69, S Ragazzi69, T Tabarelli de Fatis69, S Buontempo70, N Cavallo70, G De Nardo70, S Di Guida70, M Esposito70, F Fabozzi70, F Fienga70, A O M Iorio70, G Lanza70, L Lista70, S Meola70, P Paolucci70, C Sciacca70, F Thyssen70, P Azzi71, N Bacchetta71, L Benato71, A Boletti71, R Carlin71, P Checchia71, M Dall'Osso71, P De Castro Manzano71, T Dorigo71, U Dosselli71, F Gasparini71, U Gasparini71, A Gozzelino71, S Lacaprara71, M Margoni71, A T Meneguzzo71, J Pazzini71, M Pegoraro71, N Pozzobon71, P Ronchese71, M Sgaravatto71, F Simonetto71, E Torassa71, S Ventura71, M Zanetti71, P Zotto71, A Braghieri72, F Fallavollita72, A Magnani72, P Montagna72, S P Ratti72, V Re72, C Riccardi72, P Salvini72, I Vai72, P Vitulo72, L Alunni Solestizi73, G M Bilei73, D Ciangottini73, L Fanò73, P Lariccia73, R Leonardi73, G Mantovani73, M Menichelli73, A Saha73, A Santocchia73, K Androsov74, P Azzurri74, G Bagliesi74, J Bernardini74, T Boccali74, R Castaldi74, M A Ciocci74, R Dell'Orso74, S Donato74, G Fedi74, A Giassi74, M T Grippo74, F Ligabue74, T Lomtadze74, L Martini74, A Messineo74, F Palla74, A Rizzi74, A Savoy-Navarro74, P Spagnolo74, R Tenchini74, G Tonelli74, A Venturi74, P G Verdini74, L Barone75, F Cavallari75, M Cipriani75, D Del Re75, M Diemoz75, S Gelli75, E Longo75, F Margaroli75, B Marzocchi75, P Meridiani75, G Organtini75, R Paramatti75, F Preiato75, S Rahatlou75, C Rovelli75, F Santanastasio75, N Amapane76, R Arcidiacono76, S Argiro76, M Arneodo76, N Bartosik76, R Bellan76, C Biino76, N Cartiglia76, F Cenna76, M Costa76, R Covarelli76, A Degano76, N Demaria76, L Finco76, B Kiani76, C Mariotti76, S Maselli76, E Migliore76, V Monaco76, E Monteil76, M Monteno76, M M Obertino76, L Pacher76, N Pastrone76, M Pelliccioni76, G L Pinna Angioni76, F Ravera76, A Romero76, M Ruspa76, R Sacchi76, K Shchelina76, V Sola76, A Solano76, A Staiano76, P Traczyk76, S Belforte77, M Casarsa77, F Cossutti77, G Della Ricca77, A Zanetti77, D H Kim78, G N Kim78, M S Kim78, S Lee82, S W Lee175, Y D Oh78, S Sekmen78, D C Son78, Y C Yang78, A Lee79, H Kim84, J A Brochero Cifuentes81, T J Kim81, S Cho82, S Choi82, Y Go82, D Gyun82, S Ha82, B Hong82, Y Jo82, Y Kim82, K Lee82, K S Lee82, S Lee82, J Lim82, S K Park82, Y Roh82, J Almond83, J Kim83, H Lee83, S B Oh83, B C Radburn-Smith83, S H Seo83, U K Yang83, H D Yoo83, G B Yu83, M Choi84, H Kim84, J H Kim84, J S H Lee84, I C Park84, G Ryu84, M S Ryu84, Y Choi85, J Goh85, C Hwang85, J Lee85, I Yu85, V Dudenas86, A Juodagalvis86, J Vaitkus86, I Ahmed87, Z A Ibrahim87, M A B Md Ali87, F Mohamad Idris87, W A T Wan Abdullah87, M N Yusli87, Z Zolkapli87, H Castilla-Valdez88, E De La Cruz-Burelo88, I Heredia-De La Cruz88, A Hernandez-Almada88, R Lopez-Fernandez88, R Magaña Villalba88, J Mejia Guisao88, A Sanchez-Hernandez88, S Carrillo Moreno89, C Oropeza Barrera89, F Vazquez Valencia89, S Carpinteyro90, I Pedraza90, H A Salazar Ibarguen90, C Uribe Estrada90, A Morelos Pineda91, D Krofcheck92, P H Butler93, A Ahmad94, M Ahmad94, Q Hassan94, H R Hoorani94, W A Khan94, A Saddique94, M A Shah94, M Shoaib94, M Waqas94, H Bialkowska95, M Bluj95, B Boimska95, T Frueboes95, M Górski95, M Kazana95, K Nawrocki95, K Romanowska-Rybinska95, M Szleper95, P Zalewski95, K Bunkowski96, A Byszuk96, K Doroba96, A Kalinowski96, M Konecki96, J Krolikowski96, M Misiura96, M Olszewski96, M Walczak96, P Bargassa97, C Beirão Da Cruz E Silva97, B Calpas97, A Di Francesco97, P Faccioli97, P G Ferreira Parracho97, M Gallinaro97, J Hollar97, N Leonardo97, L Lloret Iglesias97, M V Nemallapudi97, J Rodrigues Antunes97, J Seixas97, O Toldaiev97, D Vadruccio97, J Varela97, P Vischia97, S Afanasiev98, P Bunin98, M Gavrilenko98, I Golutvin98, I Gorbunov98, A Kamenev98, V Karjavin98, A Lanev98, A Malakhov98, V Matveev98, V Palichik98, V Perelygin98, S Shmatov98, S Shulha98, N Skatchkov98, V Smirnov98, N Voytishin98, A Zarubin98, L Chtchipounov99, V Golovtsov99, Y Ivanov99, V Kim99, E Kuznetsova99, V Murzin99, V Oreshkin99, V Sulimov99, A Vorobyev99, Yu Andreev100, A Dermenev100, S Gninenko100, N Golubev100, A Karneyeu100, M Kirsanov100, N Krasnikov100, A Pashenkov100, D Tlisov100, A Toropin100, V Epshteyn101, V Gavrilov101, N Lychkovskaya101, V Popov101, I Pozdnyakov101, G Safronov101, A Spiridonov101, M Toms101, E Vlasov101, A Zhokin101, T Aushev102, A Bylinkin102, M Chadeeva103, R Chistov103, S Polikarpov103, V Andreev104, M Azarkin104, I Dremin104, M Kirakosyan104, A Leonidov104, A Terkulov104, A Baskakov105, A Belyaev127, E Boos105, A Ershov105, A Gribushin105, A Kaminskiy105, O Kodolova105, V Korotkikh105, I Lokhtin105, I Miagkov105, S Obraztsov105, S Petrushanko105, V Savrin105, A Snigirev105, I Vardanyan105, V Blinov106, Y Skovpen106, D Shtol106, I Azhgirey107, I Bayshev107, S Bitioukov107, D Elumakhov107, V Kachanov107, A Kalinin107, D Konstantinov107, V Krychkine107, V Petrov107, R Ryutin107, A Sobol107, S Troshin107, N Tyurin107, A Uzunian107, A Volkov107, P Adzic108, P Cirkovic108, D Devetak108, M Dordevic108, J Milosevic108, V Rekovic108, J Alcaraz Maestre109, M Barrio Luna109, E Calvo109, M Cerrada109, M Chamizo Llatas109, N Colino109, B De La Cruz109, A Delgado Peris109, A Escalante Del Valle109, C Fernandez Bedoya109, J P Fernández Ramos109, J Flix109, M C Fouz109, P Garcia-Abia109, O Gonzalez Lopez109, S Goy Lopez109, J M Hernandez109, M I Josa109, E Navarro De Martino109, A Pérez-Calero Yzquierdo109, J Puerta Pelayo109, A Quintario Olmeda109, I Redondo109, L Romero109, M S Soares109, J F de Trocóniz110, M Missiroli110, D Moran110, J Cuevas111, J Fernandez Menendez111, I Gonzalez Caballero111, J R González Fernández111, E Palencia Cortezon111, S Sanchez Cruz111, I Suárez Andrés111, J M Vizan Garcia111, I J Cabrillo112, A Calderon112, E Curras112, M Fernandez112, J Garcia-Ferrero112, G Gomez112, A Lopez Virto112, J Marco112, C Martinez Rivero112, F Matorras112, J Piedra Gomez112, T Rodrigo112, A Ruiz-Jimeno112, L Scodellaro112, N Trevisani112, I Vila112, R Vilar Cortabitarte112, D Abbaneo113, E Auffray113, G Auzinger113, P Baillon113, A H Ball113, D Barney113, P Bloch113, A Bocci113, C Botta113, T Camporesi113, R Castello113, M Cepeda113, G Cerminara113, Y Chen113, D d'Enterria113, A Dabrowski113, V Daponte113, A David113, M De Gruttola113, A De Roeck113, E Di Marco113, M Dobson113, B Dorney113, T du Pree113, D Duggan113, M Dünser113, N Dupont113, A Elliott-Peisert113, P Everaerts113, S Fartoukh113, G Franzoni113, J Fulcher113, W Funk113, D Gigi113, K Gill113, M Girone113, F Glege113, D Gulhan113, S Gundacker113, M Guthoff113, P Harris113, J Hegeman113, V Innocente113, P Janot113, J Kieseler113, H Kirschenmann113, V Knünz113, A Kornmayer113, M J Kortelainen113, K Kousouris113, M Krammer113, C Lange113, P Lecoq113, C Lourenço113, M T Lucchini113, L Malgeri113, M Mannelli113, A Martelli113, F Meijers113, J A Merlin113, S Mersi113, E Meschi113, P Milenovic113, F Moortgat113, S Morovic113, M Mulders113, H Neugebauer113, S Orfanelli113, L Orsini113, L Pape113, E Perez113, M Peruzzi113, A Petrilli113, G Petrucciani113, A Pfeiffer113, M Pierini113, A Racz113, T Reis113, G Rolandi113, M Rovere113, H Sakulin113, J B Sauvan113, C Schäfer113, C Schwick113, M Seidel113, A Sharma113, P Silva113, P Sphicas113, J Steggemann113, M Stoye113, Y Takahashi113, M Tosi113, D Treille113, A Triossi113, A Tsirou113, V Veckalns113, G I Veres113, M Verweij113, N Wardle113, H K Wöhri113, A Zagozdzinska113, W D Zeuner113, W Bertl114, K 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Abstract

This paper reports the measurement of [Formula: see text] meson production in proton-proton ([Formula: see text]) and proton-lead ([Formula: see text]) collisions at a center-of-mass energy per nucleon pair of [Formula: see text] by the CMS experiment at the LHC. The data samples used in the analysis correspond to integrated luminosities of 28[Formula: see text] and 35[Formula: see text] for [Formula: see text] and [Formula: see text] collisions, respectively. Prompt and nonprompt [Formula: see text] mesons, the latter produced in the decay of [Formula: see text] hadrons, are measured in their dimuon decay channels. Differential cross sections are measured in the transverse momentum range of [Formula: see text], and center-of-mass rapidity ranges of [Formula: see text] ([Formula: see text]) and [Formula: see text] ([Formula: see text]). The nuclear modification factor, [Formula: see text], is measured as a function of both [Formula: see text] and [Formula: see text]. Small modifications to the [Formula: see text] cross sections are observed in [Formula: see text] relative to [Formula: see text] collisions. The ratio of [Formula: see text] production cross sections in [Formula: see text]-going and Pb-going directions, [Formula: see text], studied as functions of [Formula: see text] and [Formula: see text], shows a significant decrease for increasing transverse energy deposited at large pseudorapidities. These results, which cover a wide kinematic range, provide new insight on the role of cold nuclear matter effects on prompt and nonprompt [Formula: see text] production.

Entities:  

Year:  2017        PMID: 28515672      PMCID: PMC5409035          DOI: 10.1140/epjc/s10052-017-4828-3

Source DB:  PubMed          Journal:  Eur Phys J C Part Fields        ISSN: 1434-6044            Impact factor:   4.590


Introduction

It was suggested 3 decades ago that quark-gluon plasma (QGP) formation would suppress the yield of mesons in high-energy heavy ion collisions, relative to that in proton–proton () collisions, as a consequence of Debye screening of the heavy-quark potential at finite temperature [1]. This QGP signature triggered intense research activity, both experimental and theoretical, on the topic of heavy quarkonium production in nuclear collisions. Experiments at SPS [2, 3], RHIC [4, 5], and the CERN LHC [6, 7] have reported a significant suppression in heavy ion collisions compared to the expectation based on data. This suppression is found to be larger for more central collisions over a wide range in rapidity (y) and transverse momentum (). In addition, a suppression of different bottomonium states has been observed at the LHC in lead–lead () collisions at a center-of-mass energy per nucleon pair of  [8-10], which appears to be consistent with the suggested picture of quarkonium suppression in the QGP [11, 12]. In order to interpret these results unambiguously, it is necessary to constrain the so-called cold nuclear matter effects on quarkonium production, through, e.g., baseline measurements in collisions. Among these effects, parton distribution functions in nuclei (nPDF) are known to differ from those in a free proton and thus influence the quarkonium yields in nuclear collisions. The expected depletion of nuclear gluon density at small values of the momentum fraction (x), an effect known as shadowing, would suppress production at forward y, corresponding to the -going direction in collisions [13, 14]. It has been also suggested that gluon radiation induced by parton multiple scattering in the nucleus can lead to broadening and coherent energy loss, resulting in a significant forward suppression in collisions at all available energies [15, 16]. These phenomena can be quantified by the nuclear modification factor, , defined as the ratio of cross sections in collisions over those in collisions scaled by the number of nucleons in the ion (), and by the ratio of cross sections at forward (-going direction) over those at backward (-going direction) rapidities. In addition to prompt mesons, directly produced in the primary interaction or from the decay of heavier charmonium states such as and , the production of mesons includes a nonprompt contribution coming from the later decay of hadrons, whose production rates are also expected to be affected by cold nuclear matter effects [17, 18]. However, neither high- mesons nor b quark jets show clear evidence of their cross sections being modified in collisions [19, 20]. In this respect, the nonprompt component of production can shed light on the nature of nuclear effects (if any) on bottom-quark production at low . At the LHC, meson production in collisions at has been measured by the ALICE [21, 22], ATLAS [23], and LHCb [24] collaborations. The ratio has been determined as functions of rapidity in the center-of-mass frame, , and . Using an interpolation of the production cross sections at the same collision energy, has also been estimated in Refs. [21, 22, 24] as functions of and . A significant suppression of the prompt production in collisions has been observed at forward and low , while no strong nuclear effects are observed at backward . This paper reports an analysis of production in and collisions at , using data collected with the CMS detector in 2013 () and in 2015 (). The mesons with are measured via their dimuon decay channels in ranges of in and in collisions. The corresponding values of x range from , at forward and low , to , at backward and higher . Both and are measured as functions of and . The latter ratio is also studied as a function of the event activity in collisions, as characterized by the transverse energy deposited in the CMS detector at large pseudorapidities.

Experimental setup and event selection

The main feature of the CMS detector is a superconducting solenoid with an internal diameter of 6 m, providing a magnetic field of 3.8 T. Within the field volume are the silicon pixel and strip tracker, the crystal electromagnetic calorimeter, and the brass and scintillator hadronic calorimeter. The silicon pixel and strip tracker measures charged particle trajectories in the pseudorapidity range of . It consists of 66 M pixel and 10 M strip sensor elements. Muons are detected in the range of , with detection planes based on three technologies: drift tubes, cathode strip chambers, and resistive plate chambers. The CMS apparatus also has extensive forward calorimetry, including two steel and quartz-fiber Cherenkov hadron forward (HF) calorimeters, which cover . These detectors are used for online event selection and the impact parameter characterization of the events in collisions, where the term impact parameter refers to the transverse distance between the two centers of the colliding hadrons. A more detailed description of the CMS detector, together with a definition of the coordinate system used and the relevant kinematic variables, can be found in Ref. [25]. The data set used in this analysis corresponds to an integrated luminosity of 34.6. The beam energies are 4 for , and 1.58 per nucleon for the nuclei, resulting in . The direction of the higher-energy beam was initially set up to be clockwise, and was reversed after 20.7. As a result of the beam energy difference, the nucleon–nucleon center-of-mass in collisions is not at rest with respect to the laboratory frame. Massless particles emitted at in the nucleon–nucleon center-of-mass frame are detected at for the first run period (clockwise beam) and for the second run period (counterclockwise beam) in the laboratory frame; the region is thus probed by flipping the of one data set so that the -going direction is always toward positive . The data set is also collected at the same collision energy with an integrated luminosity of 28.0. In this sample, mesons are measured over . In order to remove beam-related background such as beam-gas interactions, inelastic hadronic collisions are selected by requiring a coincidence of at least one of the HF calorimeter towers with more than 3 of total energy on each side of the interaction point. This requirement is not present in collisions which suffer less from photon-induced interactions compared to collisions. The and events are further selected to have at least one reconstructed primary vertex composed of two or more associated tracks, excluding the two muons from the candidates, within 25 from the nominal interaction point along the beam axis and within 2 in its transverse plane. To reject beam-scraping events, the fraction of good-quality tracks associated with the primary vertex is required to be larger than 25% when there are more than 10 tracks per event. In collisions, an additional filter [26] is applied to remove events containing multiple interactions per bunch crossing (pileup). After the selection, the residual fraction of pileup events is reduced from 3% to less than 0.2%. This pileup rejection results in a 4.1% signal loss, which is corrected for in the cross section measurements. Since pileup only affects the event activity dependence in results, no filter is applied in results. Dimuon events are selected by the level-1 trigger, a hardware-based trigger system requiring two muon candidates in the muon detectors with no explicit limitations in or y. In the offline analysis, muons are required to be within the following kinematic regions, which ensure single-muon reconstruction efficiencies above 10%:The muon pairs are further selected to be of opposite charge, to originate from a common vertex with a probability greater than 1%, and to match standard identification criteria [27]. Simulated events are used to obtain the correction factors for acceptance and efficiency. The Monte Carlo (MC) samples of mesons are generated using pythia 8.209 [28] for and pythia 6.424 [29] for collisions. Generated particles in the simulation are boosted by to account for the asymmetry of and beams in the laboratory frame. Samples for prompt and nonprompt mesons are independently produced using the D6T [30] and Z2 [31] tunes, respectively. In the absence of experimental information on quarkonium polarization in and collisions at , it is assumed that prompt mesons are produced unpolarized, as observed in collisions at  [32-34]. The nonprompt sample includes the polarization () determined from a measurement of the exclusive hadron decays (, and ) as implemented in evtgen 9.1 [35]. The measurements might be affected by physics processes with strong kinematic dependence within an analysis bin, e.g., polarization or energy loss. Such possible physics effects on the final cross sections are not included in the systematic uncertainties, as was done in the previous analyses [8, 9]. The QED final-state radiation from muons is simulated with photos 215.5 [36]. Finally, the CMS detector response is simulated using Geant4  [37].

Analysis procedure

Differential cross section, , and

In this paper, three observables analyzed in meson decays to muon pairs are reported. First, the cross sections are determined based onwhere is the branching fraction to the channel [38], is the extracted raw yield of mesons in a given bin, represents the dimuon acceptance times efficiency described in Sect. 3.3, and is the integrated luminosity with the values of for  [39] and for  [40] collisions. The cross sections are measured in up to nine bins in ([2,3], [3,4] [4,5], [5,6.5], [6.5,7.5], [7.5,8.5], [8.5,10], [10,14], [14,30]), with the minimum values varying with ranges as shown in Table 1.
Table 1

Rapidity intervals and associated minimum values for the cross section measurements in and collisions

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Rapidity intervals and associated minimum values for the cross section measurements in and collisions The second observable considered is the nuclear modification factor, calculated aswhere is the number of nucleons in the nucleus. The third measurement is the forward-to-backward production ratio for collisions, defined for positive byThis variable is a sensitive probe of the dynamics of production by comparing nuclear effects in the forward and the backward hemispheres, since is equivalent to . In addition, several uncertainties cancel in the ratio, such as those from the integrated luminosity determination. The minimum values for the measurement are 5 for , and 6.5 for . The ratio is also analyzed as a function of , the transverse energy deposited on both sides of the collisions in the HF calorimeters within the range. This energy is related to the impact parameter of the collision. In Table 2, the mean value of and the fraction of events for each bin used in the analysis are computed from minimum bias events.
Table 2

Ranges of forward transverse energy, , their mean values, and associated fractions of events that fall into each category

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0–209.473
20–3024.318
 >3037.29
Ranges of forward transverse energy, , their mean values, and associated fractions of events that fall into each category

Signal extraction

The signal extraction procedure is similar to that in previous CMS analyses of  [41, 42] and  [6] collisions. The prompt mesons are separated from those coming from hadron decays by virtue of the pseudo-proper decay length, , where is the transverse distance between the primary and secondary dimuon vertices in the laboratory frame, is the mass of the meson, and is the dimuon transverse momentum. For each , , and event activity bin, the fraction of nonprompt mesons (b fraction) is evaluated through an extended unbinned maximum likelihood fit to the invariant mass spectrum and distributions of pairs, sequentially. The invariant mass spectrum is fitted first, and some parameters are initialized and/or fixed. Then, the distribution is fitted. Examples of the invariant mass (left) and pseudo-proper decay length (right) distributions of pairs for (upper) and (lower) collisions. The bin widths of distributions vary from 15 to 500 m, with the averaged value of 83 m. The projections of the 2D fit function onto the respective axes are overlaid as solid lines. The long-dashed lines show the fitted contribution of nonprompt mesons. The fitted background contributions are shown by short-dashed lines For the dimuon invariant mass distributions, the shape of the signal is modeled by the sum of a Gaussian function and a Crystal Ball (CB) function [43], with common mean values and independent widths, in order to accommodate the rapidity-dependent mass resolution. The CB function combines a Gaussian core with a power-law tail using two parameters and , to describe final-state QED radiation of muons. Because the two parameters are strongly correlated, the value of is fixed at 2.1, while the is a free parameter of the fit. This configuration gives the highest fit probability for data, in every bin, when various settings of and are tested. The invariant mass distribution of the underlying continuum background is represented by an exponential function. For the distributions, the prompt signal component is represented by a resolution function, which depends on the per-event uncertainty in the provided by the reconstruction algorithm of primary and secondary vertices. The resolution function is composed of the sum of two Gaussian functions. A Gaussian with a narrower width () describes the core of the signal component, while another with a greater width () accounts for the effect of uncertainties in the primary vertex determination and has a fixed value based on MC simulations. The distribution of the nonprompt component is modeled by an exponential decay function convolved with a resolution function. The continuum background component is modeled by the sum of three exponential decay functions, a normal one on one side , a flipped one on the other side , and a double-sided one, which are also convolved with a resolution function. The parameters describing the distributions of the background are determined from sidebands in the invariant mass distribution and . The results are insensitive to the selection of sideband ranges. For analysis, two data sets corresponding to each beam direction are merged and fitted together, after it is determined that the results are compatible with those from a separate analysis, performed over each data set. Figure 1 shows examples of fit projections onto the mass (left) and (right) axes for muon pairs with in from (upper), and in from (lower) collisions.
Fig. 1

Examples of the invariant mass (left) and pseudo-proper decay length (right) distributions of pairs for (upper) and (lower) collisions. The bin widths of distributions vary from 15 to 500 m, with the averaged value of 83 m. The projections of the 2D fit function onto the respective axes are overlaid as solid lines. The long-dashed lines show the fitted contribution of nonprompt mesons. The fitted background contributions are shown by short-dashed lines

Corrections

The acceptance and reconstruction, identification, and trigger efficiency corrections are evaluated from the MC simulation described in Sect. 2. The acceptance is estimated by the fraction of generated mesons in each bin, decaying into two muons, each within the fiducial phase space defined in Eq. (1). In order to compensate for imperfections in the simulation-based efficiencies, an additional scaling factor is applied, calculated with a tag-and-probe (T&P) method [44]. The tag muons require tight identification, and the probe muons are selected with and without satisfying the selection criteria relevant to the efficiency being measured. Then, invariant mass distributions of tag and probe pairs in the mass range are fitted to count the number of signals in the two groups. The single-muon efficiencies are deduced from the ratio of mesons in the passing-probe over all-probe group. The data-to-simulation ratios of single-muon efficiencies are used to correct the dimuon efficiencies, taking the kinematic distributions of decayed muons into account. The dimuon efficiency weights evaluated by the T&P method are similar for and events and range from 0.98 to 1.90, with the largest one coming from the lowest bin. The efficiencies are independent of the event activity, as verified by data and in a pythia sample embedded in simulated events generated by hijing 1.383 [45]. In addition, the shape of the uncorrected distributions of yield versus in data and MC samples are observed to be different. To resolve the possible bias in acceptance and efficiency corrections, the data-to-simulation ratios are fitted by empirical functions and used to reweight the spectra in MC samples for each bin. The effect of reweighting on the acceptance and efficiency is detailed in the next Section.

Systematic uncertainties

The following sources of systematic uncertainties are considered: fitting procedure, acceptance and efficiency corrections, and integrated luminosities. To estimate the systematic uncertainty due to the fitting procedure, variations of the parameters or alternative fit functions have been considered for the invariant mass and distributions. For the signal shape in the invariant mass distributions, three alternative parameter settings are tested: (1) is set to 1.7, averaged from the default fit, and free, (2) both and are left free, and (3) both are obtained from a MC template and then fixed when fit to the data. The maximum deviation of yields among these three variations is quoted as the uncertainty. For the background fit of the invariant mass distributions, a first-order polynomial is used as an alternative. For the shape of distribution of prompt mesons, two alternatives are studied: (1) both and are left free, and (2) both parameters are fixed to the MC templates. The maximum deviation of yields is taken as the uncertainty. Finally, for the distribution shape of nonprompt mesons, the template shape is directly taken from reconstructed MC events. The uncertainties from the previously mentioned methods are 0.7–5.0% for prompt and 1.1–36.3% for nonprompt mesons. They are larger for the shape variations in the than in the invariant mass distributions, especially for nonprompt mesons. For the uncertainties from acceptance and efficiency correction factors, the effect of reweighting the spectrum of events generated by pythia generator as described in Sect. 3.3 is considered. The deviation of the correction factors obtained from the default pythia spectra and those from data-based weighted spectra is less than 2.9% across all kinematic ranges. The full deviation values are quoted as the systematic uncertainties. The determination of uncertainties for T&P corrections is performed by propagating the uncertainties in single-muon efficiencies to the dimuon efficiency values. The systematic uncertainties are evaluated by varying the fit conditions in the T&P procedure, and the statistical uncertainties are estimated using a fast parametric simulation. The total uncertainty from T&P corrections is obtained by the quadratic sum of two sources. Uncertainties from the efficiency correction, including the T&P uncertainties, range from 2.4 to 6.1%, and tend to be larger for lower . The uncertainty in the integrated luminosities (2.3% for  [39] and 3.5% for  [40]) is correlated across all data points and affects only the production cross sections and , while it cancels out in the measurements. Table 3 summarizes systematic uncertainties considered in this analysis. The range refers to different bins; the uncertainties tend to be lower at high and midrapidity, and higher at low and forward or backward . The larger uncertainties of the nonprompt yields come from the signal extraction in their lowest bin, 2–3. In the case of the measurements with a limit of 4, maximum uncertainties for nonprompt mesons are 12.7% for and 12.8% for collisions. The total systematic uncertainty is evaluated as the quadratic sum of the uncertainties from all sources in each kinematic bin, except for those from the integrated luminosity determination.
Table 3

Summary of the relative systematic uncertainties for the cross section measurements, given in percentages, for prompt and nonprompt mesons in and collisions

Prompt \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\mathrm{J}/{\psi }$$\end{document}J/ψ Nonprompt \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\mathrm{J}/{\psi }$$\end{document}J/ψ
\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\mathrm {p}\mathrm {p}$$\end{document}pp \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\mathrm {p}\mathrm {Pb}$$\end{document}pPb \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\mathrm {p}\mathrm {p}$$\end{document}pp \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\mathrm {p}\mathrm {Pb}$$\end{document}pPb
Signal extraction0.8–3.20.7–5.02.0–36.31.1–29.5
Efficiency2.4–4.42.4–6.12.4–4.32.4–6.1
Acceptance0.0–2.30.0–1.20.0–1.30.0–1.3
Integrated luminosity2.33.52.33.5
Total2.7–5.32.8–7.13.4–36.53.3–30.1
Summary of the relative systematic uncertainties for the cross section measurements, given in percentages, for prompt and nonprompt mesons in and collisions

Results

Prompt mesons

Differential cross section (multiplied by the dimuon branching fraction) of prompt mesons in (left) and (right) collisions at forward (upper) and backward (lower) . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties Rapidity dependence of the cross section (multiplied by the dimuon branching fraction) for prompt mesons in the intervals of (circles) and (squares) in (upper) and (lower) collisions. The vertical dashed line indicates . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties Figure 2 shows the double-differential prompt production cross sections multiplied by the dimuon branching fraction in (left) and (right) collisions, with data points plotted at the center of each bin. Statistical uncertainties are displayed as vertical bars, while boxes that span the bin width represent systematic uncertainties. Not shown is a global normalization uncertainty of 2.3% in and 3.5% in collisions arising from the integrated luminosity determination.
Fig. 2

Differential cross section (multiplied by the dimuon branching fraction) of prompt mesons in (left) and (right) collisions at forward (upper) and backward (lower) . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties

Prompt distributions are shown in Fig. 3 in (upper) and (lower) collisions. The measurements are integrated over two intervals, (low ) and (high ).
Fig. 3

Rapidity dependence of the cross section (multiplied by the dimuon branching fraction) for prompt mesons in the intervals of (circles) and (squares) in (upper) and (lower) collisions. The vertical dashed line indicates . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties

The dependence of prompt is shown in Fig. 4, in seven ranges for which and measurements overlap. Around midrapidity () and in the three backward bins (lower panels), is slightly above unity without a clear dependence on . In the most forward bin (), suppression at low () is observed, followed by a weak increase of at higher . The results are compared to three model calculations. One is based on the next-to-leading order (NLO) Color Evaporation Model [14] using the EPS09 [46] nPDF set. The other two are calculated from the nPDF sets of EPS09 and nCTEQ15 [47], respectively, with the parameterization of partonic scattering process based on data, as described in Ref. [48]. All three calculations are marginally lower than the measured values across all bins. The calculations based on coherent energy loss are not yet available to describe quarkonium production at large (); therefore, no comparison of the present data with the model [15] is performed.
Fig. 4

Transverse momentum dependence of for prompt mesons in seven ranges. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis. The predictions of shadowing models based on the parameterizations EPS09 and nCTEQ15 [14, 46–48] are also shown

It is worth noting that the values measured in the most forward () and backward () regions are consistent, in the overlapping intervals (), with the inclusive results of the ALICE collaboration [21, 22] over and , obtained using an interpolated cross section reference. Although the ALICE results are for inclusive mesons, the nonprompt contribution is expected to be relatively small () in the domain . Transverse momentum dependence of for prompt mesons in seven ranges. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis. The predictions of shadowing models based on the parameterizations EPS09 and nCTEQ15 [14, 46–48] are also shown Rapidity dependence of for prompt mesons in two ranges: (upper) and (lower). The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis. The predictions of shadowing models based on the parameterizations EPS09 and nCTEQ15 [14, 46–48] are also shown Figure 5 displays the dependence of prompt in the low- (upper) and the high- (lower) regions corresponding to the same bins used in Fig. 3. In the high- region, is above unity over the whole range. In the lower- region, a decrease of for increasing is suggested. The same theoretical predictions shown in Fig. 4 are overlaid. In contrast to the measurement of mesons in collisions [6], no significant deviation from unity is observed in the and ranges studied here. This suggests that the strong suppression of production in collisions is an effect of QGP formation.
Fig. 5

Rapidity dependence of for prompt mesons in two ranges: (upper) and (lower). The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis. The predictions of shadowing models based on the parameterizations EPS09 and nCTEQ15 [14, 46–48] are also shown

The forward-to-backward ratio of cross sections, , in three ranges is displayed as a function of for prompt mesons in Fig. 6. The tends to be below unity at low and forward . In the bin, an indication of decrease of with increasing is observed. The results are in agreement with the measurements from the ATLAS [23], ALICE [21, 22], and LHCb [24] collaborations.
Fig. 6

Transverse momentum dependence of for prompt mesons in three regions. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties

Figure 7 shows as a function of for prompt mesons in three ranges. The data are integrated over ; a lower- bin, , is shown in addition for the most forward-backward interval, . The value of decreases as a function of , suggesting that the effects that cause the asymmetry between the forward-to-backward production are larger in events with more hadronic activity.
Fig. 7

Dependence of for prompt mesons on the hadronic activity in the event, given by the transverse energy deposited in the CMS detector at large pseudorapidities . Data points are slightly shifted horizontally so that they do not overlap. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties

Transverse momentum dependence of for prompt mesons in three regions. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties Dependence of for prompt mesons on the hadronic activity in the event, given by the transverse energy deposited in the CMS detector at large pseudorapidities . Data points are slightly shifted horizontally so that they do not overlap. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties

Nonprompt mesons

Differential cross section (multiplied by the dimuon branching fraction) of nonprompt mesons in (left) and (right) collisions at forward (upper) and backward (lower) . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties Rapidity dependence of the cross section (multiplied by the dimuon branching fraction) for nonprompt mesons in the intervals of (circles) and (squares) in (upper) and (lower) collisions. The vertical dashed line indicates . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties Transverse momentum dependence of for nonprompt mesons in seven ranges. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis Rapidity dependence of for nonprompt mesons in two ranges: (upper) and (lower). The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis Transverse momentum dependence of for nonprompt mesons in three regions. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties Dependence of for nonprompt mesons on the hadronic activity in the event, given by the transverse energy deposited in the CMS detector at large pseudorapidities . Data points are slightly shifted horizontally so that they do not overlap. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties The same distributions and observables discussed in Sect. 4.1 have been investigated for the nonprompt meson samples. Differential cross sections are plotted as functions of and in Figs. 8 and 9, respectively, using the same binning as for prompt mesons.
Fig. 8

Differential cross section (multiplied by the dimuon branching fraction) of nonprompt mesons in (left) and (right) collisions at forward (upper) and backward (lower) . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties

Fig. 9

Rapidity dependence of the cross section (multiplied by the dimuon branching fraction) for nonprompt mesons in the intervals of (circles) and (squares) in (upper) and (lower) collisions. The vertical dashed line indicates . The vertical bars (smaller than the symbols in most cases) represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty from the integrated luminosity determination, 2.3% for and 3.5% for collisions, is not included in the point-by-point uncertainties

The measurement of for nonprompt mesons shown in Fig. 10 as a function of is compatible with unity in all bins. The somewhat larger uncertainties, however, make it difficult to draw firm conclusions for the nonprompt production. The dependence of nonprompt integrated in the low- and high- regions is shown in Fig. 11. In all bins, is consistent with unity although the data hint at a rapidity dependence for in the low region, as found in the prompt meson production (Fig. 5).
Fig. 10

Transverse momentum dependence of for nonprompt mesons in seven ranges. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis

Fig. 11

Rapidity dependence of for nonprompt mesons in two ranges: (upper) and (lower). The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties. The fully correlated global uncertainty of 4.2% is displayed as a gray box at next to the left axis

Figures 12 and 13 show the and dependence of nonprompt , respectively. The ratios seem to increase slightly with from to in all bins. The results are consistent with those from the ATLAS [23] and LHCb [24] collaborations within uncertainties. As seen for prompt meson production, for nonprompt meson production decreases with , indicating the presence of different nuclear effects at forward than at backward in the regions with the greatest event activity.
Fig. 12

Transverse momentum dependence of for nonprompt mesons in three regions. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties

Fig. 13

Dependence of for nonprompt mesons on the hadronic activity in the event, given by the transverse energy deposited in the CMS detector at large pseudorapidities . Data points are slightly shifted horizontally so that they do not overlap. The vertical bars represent the statistical uncertainties and the shaded boxes show the systematic uncertainties

Summary

Proton–proton () and proton–lead () data at collected with the CMS detector are used to investigate the production of prompt and nonprompt mesons and its possible modification due to cold nuclear matter effects. Double-differential cross sections, as well as the nuclear modification factor and forward-to-backward production ratio , are reported as functions of the and . The values for prompt mesons are above unity in mid- and backward intervals analyzed (), with a possible depletion in the most forward bin at low . In the case of nonprompt meson production, is compatible with unity in all bins. The prompt is below unity for and forward , but is consistent with unity for . For nonprompt mesons, tends to be below unity at and increases for higher , but with slightly larger uncertainties. The dependence of on the hadronic activity in events has been studied through the variable , characterizing the transverse energy deposited in the CMS detector at large pseudorapidities . The ratio is observed to decrease with increasing event activity for both prompt and nonprompt mesons, indicating enhanced nuclear matter effects for increasingly central collisions. A depletion of prompt mesons in collisions (as compared to collisions) is expected in the forward region because of the shadowing of nuclear parton distributions and/or coherent energy loss effects. Such a suppression is observed in the measurements presented in this paper at and , but not at larger , consistent with the expected reduced impact of nuclear parton distributions and coherent energy loss effects for increasing . At negative , both shadowing and energy loss effects are known to lead to small nuclear modifications, as confirmed by the present measurements. Such processes are also expected to affect the nuclear dependence of hadron production and thereby, through its decays, nonprompt production. The measurements presented here provide new constraints on cold nuclear matter effects on prompt and nonprompt production over a wide kinematic range.
  9 in total

1.  HIGING: A Monte Carlo model for multiple jet production in pp, pA, and AA collisions.

Authors: 
Journal:  Phys Rev D Part Fields       Date:  1991-12-01

2.  J/ψ polarization in pp collisions at √s=7 TeV.

Authors:  B Abelev; A Abrahantes Quintana; D Adamová; A M Adare; M M Aggarwal; G Aglieri Rinella; A G Agocs; A Agostinelli; S Aguilar Salazar; Z Ahammed; N Ahmad; A Ahmad Masoodi; S U Ahn; A Akindinov; D Aleksandrov; B Alessandro; R AlfaroMolina; A Alici; A Alkin; E Almaráz Aviña; T Alt; V Altini; S Altinpinar; I Altsybeev; C Andrei; A Andronic; V Anguelov; C Anson; T Antičić; F Antinori; P Antonioli; L Aphecetche; H Appelshäuser; N Arbor; S Arcelli; A Arend; N Armesto; R Arnaldi; T Aronsson; I C Arsene; M Arslandok; A Asryan; A Augustinus; R Averbeck; T C Awes; J Aystö; M D Azmi; M Bach; A Badalà; Y W Baek; R Bailhache; R Bala; R Baldini Ferroli; A Baldisseri; A Baldit; F Baltasar Dos Santos Pedrosa; J Bán; R C Baral; R Barbera; F Barile; G G Barnaföldi; L S Barnby; V Barret; J Bartke; M Basile; N Bastid; B Bathen; G Batigne; B Batyunya; C Baumann; I G Bearden; H Beck; I Belikov; F Bellini; R Bellwied; E Belmont-Moreno; S Beole; I Berceanu; A Bercuci; Y Berdnikov; D Berenyi; C Bergmann; D Berzano; L Betev; A Bhasin; A K Bhati; N Bianchi; L Bianchi; C Bianchin; J Bielčík; J Bielčíková; A Bilandzic; F Blanco; F Blanco; D Blau; C Blume; M Boccioli; N Bock; A Bogdanov; H Bøggild; M Bogolyubsky; L Boldizsár; M Bombara; J Book; H Borel; A Borissov; C Bortolin; S Bose; F Bossú; M Botje; S Böttger; B Boyer; P Braun-Munzinger; M Bregant; T Breitner; M Broz; R Brun; E Bruna; G E Bruno; D Budnikov; H Buesching; S Bufalino; K Bugaiev; O Busch; Z Buthelezi; D Caffarri; X Cai; H Caines; E Calvo Villar; P Camerini; V Canoa Roman; G Cara Romeo; W Carena; F Carena; N Carlin Filho; F Carminati; C A Carrillo Montoya; A Casanova Díaz; M Caselle; J Castillo Castellanos; J F Castillo Hernandez; E A R Casula; V Catanescu; C Cavicchioli; J Cepila; P Cerello; B Chang; S Chapeland; J L Charvet; S Chattopadhyay; S Chattopadhyay; M Cherney; C Cheshkov; B Cheynis; E Chiavassa; V Chibante Barroso; D D Chinellato; P Chochula; M Chojnacki; P Christakoglou; C H Christensen; P Christiansen; T Chujo; S U Chung; C Cicalò; L Cifarelli; F Cindolo; J Cleymans; F Coccetti; J-P Coffin; F Colamaria; D Colella; G Conesa Balbastre; Z Conesa del Valle; P Constantin; G Contin; J G Contreras; T M Cormier; Y Corrales Morales; P Cortese; I Cortés Maldonado; M R Cosentino; F Costa; M E Cotallo; E Crescio; P Crochet; E Cruz Alaniz; E Cuautle; L Cunqueiro; A Dainese; H H Dalsgaard; A Danu; D Das; I Das; K Das; S Dash; A Dash; S De; A De Azevedo Moregula; G O V de Barros; A De Caro; G de Cataldo; J de Cuveland; A De Falco; D De Gruttola; H Delagrange; E Del Castillo Sanchez; A Deloff; V Demanov; N De Marco; E Dénes; S De Pasquale; A Deppman; G D'Erasmo; R de Rooij; D Di Bari; T Dietel; C Di Giglio; S Di Liberto; A Di Mauro; P Di Nezza; R Divià; Ø Djuvsland; A Dobrin; T Dobrowolski; I Domínguez; B Dönigus; O Dordic; O Driga; A K Dubey; L Ducroux; P Dupieux; M R Dutta Majumdar; A K Dutta Majumdar; D Elia; D Emschermann; H Engel; H A Erdal; B Espagnon; M Estienne; S Esumi; D Evans; G Eyyubova; D Fabris; J Faivre; D Falchieri; A Fantoni; M Fasel; R Fearick; A Fedunov; D Fehlker; L Feldkamp; D Felea; G Feofilov; A Fernández Téllez; E G Ferreiro; A Ferretti; R Ferretti; J Figiel; M A S Figueredo; S Filchagin; R Fini; D Finogeev; F M Fionda; E M Fiore; M Floris; S Foertsch; P Foka; S Fokin; E Fragiacomo; M Fragkiadakis; U Frankenfeld; U Fuchs; C Furget; M Fusco Girard; J J Gaardhøje; M Gagliardi; A Gago; M Gallio; D R Gangadharan; P Ganoti; C Garabatos; E Garcia-Solis; I Garishvili; J Gerhard; M Germain; C Geuna; A Gheata; M Gheata; B Ghidini; P Ghosh; P Gianotti; M R Girard; P Giubellino; E Gladysz-Dziadus; P Glässel; R Gomez; L H González-Trueba; P González-Zamora; S Gorbunov; A Goswami; S Gotovac; V Grabski; L K Graczykowski; R Grajcarek; A Grelli; A Grigoras; C Grigoras; V Grigoriev; S Grigoryan; A Grigoryan; B Grinyov; N Grion; P Gros; J F Grosse-Oetringhaus; J-Y Grossiord; R Grosso; F Guber; R Guernane; C Guerra Gutierrez; B Guerzoni; M Guilbaud; K Gulbrandsen; T Gunji; A Gupta; R Gupta; H Gutbrod; Ø Haaland; C Hadjidakis; M Haiduc; H Hamagaki; G Hamar; B H Han; L D Hanratty; A Hansen; Z Harmanova; J W Harris; M Hartig; D Hasegan; D Hatzifotiadou; A Hayrapetyan; M Heide; H Helstrup; A Herghelegiu; G Herrera Corral; N Herrmann; K F Hetland; B Hicks; P T Hille; B Hippolyte; T Horaguchi; Y Hori; P Hristov; I Hřivnáčová; M Huang; S Huber; T J Humanic; D S Hwang; R Ichou; R Ilkaev; I Ilkiv; M Inaba; E Incani; P G Innocenti; G M Innocenti; M Ippolitov; M Irfan; C Ivan; A Ivanov; M Ivanov; V Ivanov; O Ivanytskyi; A Jachołkowski; P M Jacobs; L Jancurová; S Jangal; M A Janik; R Janik; P H S Y Jayarathna; S Jena; R T Jimenez Bustamante; L Jirden; P G Jones; H Jung; W Jung; A Jusko; A B Kaidalov; V Kakoyan; S Kalcher; P Kaliňák; M Kalisky; T Kalliokoski; A Kalweit; K Kanaki; J H Kang; V Kaplin; A Karasu Uysal; O Karavichev; T Karavicheva; E Karpechev; A Kazantsev; U Kebschull; R Keidel; M M Khan; S A Khan; P Khan; A Khanzadeev; Y Kharlov; B Kileng; S Kim; D W Kim; J H Kim; J S Kim; M Kim; S H Kim; T Kim; B Kim; D J Kim; S Kirsch; I Kisel; S Kiselev; A Kisiel; J L Klay; J Klein; C Klein-Bösing; M Kliemant; A Kluge; M L Knichel; K Koch; M K Köhler; A Kolojvari; V Kondratiev; N Kondratyeva; A Konevskikh; C Kottachchi Kankanamge Don; R Kour; M Kowalski; S Kox; G Koyithatta Meethaleveedu; J Kral; I Králik; F Kramer; I Kraus; T Krawutschke; M Kretz; M Krivda; F Krizek; M Krus; E Kryshen; M Krzewicki; Y Kucheriaev; C Kuhn; P G Kuijer; P Kurashvili; A B Kurepin; A Kurepin; A Kuryakin; V Kushpil; S Kushpil; H Kvaerno; M J Kweon; Y Kwon; P Ladrón de Guevara; I Lakomov; R Langoy; C Lara; A Lardeux; P La Rocca; D T Larsen; C Lazzeroni; R Lea; Y Le Bornec; S C Lee; K S Lee; F Lefèvre; J Lehnert; L Leistam; M Lenhardt; V Lenti; H León; I León Monzón; H León Vargas; P Lévai; X Li; J Lien; R Lietava; S Lindal; V Lindenstruth; C Lippmann; M A Lisa; L Liu; P I Loenne; V R Loggins; V Loginov; S Lohn; D Lohner; C Loizides; K K Loo; X Lopez; E López Torres; G Løvhøiden; X-G Lu; P Luettig; M Lunardon; J Luo; G Luparello; L Luquin; C Luzzi; R Ma; K Ma; D M Madagodahettige-Don; A Maevskaya; M Mager; D P Mahapatra; A Maire; M Malaev; I Maldonado Cervantes; L Malinina; D Mal'Kevich; P Malzacher; A Mamonov; L Manceau; L Mangotra; V Manko; F Manso; V Manzari; Y Mao; M Marchisone; J Mareš; G V Margagliotti; A Margotti; A Marín; C Markert; I Martashvili; P Martinengo; M I Martínez; A Martínez Davalos; G Martínez García; Y Martynov; A Mas; S Masciocchi; M Masera; A Masoni; L Massacrier; M Mastromarco; A Mastroserio; Z L Matthews; A Matyja; D Mayani; C Mayer; M A Mazzoni; F Meddi; A Menchaca-Rocha; J Mercado Pérez; M Meres; Y Miake; A Michalon; J Midori; L Milano; J Milosevic; A Mischke; A N Mishra; D Miśkowiec; C Mitu; J Mlynarz; A K Mohanty; B Mohanty; L Molnar; L Montaño Zetina; M Monteno; E Montes; T Moon; M Morando; D A Moreira De Godoy; S Moretto; A Morsch; V Muccifora; E Mudnic; S Muhuri; H Müller; M G Munhoz; L Musa; A Musso; B K Nandi; R Nania; E Nappi; C Nattrass; N P Naumov; S Navin; T K Nayak; S Nazarenko; G Nazarov; A Nedosekin; M Nicassio; B S Nielsen; T Niida; S Nikolaev; V Nikolic; V Nikulin; S Nikulin; B S Nilsen; M S Nilsson; F Noferini; P Nomokonov; G Nooren; N Novitzky; A Nyanin; A Nyatha; C Nygaard; J Nystrand; H Obayashi; A Ochirov; H Oeschler; S K Oh; J Oleniacz; C Oppedisano; A Ortiz Velasquez; G Ortona; A Oskarsson; P Ostrowski; I Otterlund; J Otwinowski; G Øvrebekk; K Oyama; K Ozawa; Y Pachmayer; M Pachr; F Padilla; P Pagano; G Paić; F Painke; C Pajares; S Pal; S K Pal; A Palaha; A Palmeri; V Papikyan; G S Pappalardo; W J Park; A Passfeld; B Pastirčák; D I Patalakha; V Paticchio; A Pavlinov; T Pawlak; T Peitzmann; M Perales; E Pereira De Oliveira Filho; D Peresunko; C E Pérez Lara; E Perez Lezama; D Perini; D Perrino; W Peryt; A Pesci; V Peskov; Y Pestov; V Petráček; M Petran; M Petris; P Petrov; M Petrovici; C Petta; S Piano; A Piccotti; M Pikna; P Pillot; O Pinazza; L Pinsky; N Pitz; F Piuz; D B Piyarathna; M Płoskoń; J Pluta; T Pocheptsov; S Pochybova; P L M Podesta-Lerma; M G Poghosyan; K Polák; B Polichtchouk; A Pop; S Porteboeuf-Houssais; V Pospíšil; B Potukuchi; S K Prasad; R Preghenella; F Prino; C A Pruneau; I Pshenichnov; G Puddu; A Pulvirenti; V Punin; M Putiš; J Putschke; E Quercigh; H Qvigstad; A Rachevski; A Rademakers; S Radomski; T S Räihä; J Rak; A Rakotozafindrabe; L Ramello; A Ramírez Reyes; S Raniwala; R Raniwala; S S Räsänen; B T Rascanu; D Rathee; K F Read; J S Real; K Redlich; P Reichelt; M Reicher; R Renfordt; A R Reolon; A Reshetin; F Rettig; J-P Revol; K Reygers; H Ricaud; L Riccati; R A Ricci; M Richter; P Riedler; W Riegler; F Riggi; M Rodríguez Cahuantzi; D Rohr; D Röhrich; R Romita; F Ronchetti; P Rosnet; S Rossegger; A Rossi; F Roukoutakis; C Roy; P Roy; A J Rubio Montero; R Rui; E Ryabinkin; A Rybicki; S Sadovsky; K Safařík; P K Sahu; J Saini; H Sakaguchi; S Sakai; D Sakata; C A Salgado; S Sambyal; V Samsonov; X Sanchez Castro; L Sándor; A Sandoval; M Sano; S Sano; R Santo; R Santoro; J Sarkamo; E Scapparone; F Scarlassara; R P Scharenberg; C Schiaua; R Schicker; H R Schmidt; C Schmidt; S Schreiner; S Schuchmann; J Schukraft; Y Schutz; K Schwarz; K Schweda; G Scioli; E Scomparin; R Scott; P A Scott; G Segato; I Selyuzhenkov; S Senyukov; J Seo; S Serci; E Serradilla; A Sevcenco; I Sgura; G Shabratova; R Shahoyan; N Sharma; S Sharma; K Shigaki; M Shimomura; K Shtejer; Y Sibiriak; M Siciliano; E Sicking; S Siddhanta; T Siemiarczuk; D Silvermyr; G Simonetti; R Singaraju; R Singh; S Singha; T Sinha; B C Sinha; B Sitar; M Sitta; T B Skaali; K Skjerdal; R Smakal; N Smirnov; R Snellings; C Søgaard; R Soltz; H Son; J Song; M Song; C Soos; F Soramel; M Spyropoulou-Stassinaki; B K Srivastava; J Stachel; I Stan; I Stan; G Stefanek; G Stefanini; T Steinbeck; M Steinpreis; E Stenlund; G Steyn; D Stocco; M Stolpovskiy; P Strmen; A A P Suaide; M A Subieta Vásquez; T Sugitate; C Suire; M Sukhorukov; R Sultanov; M Sumbera; T Susa; A Szanto de Toledo; I Szarka; A Szostak; C Tagridis; J Takahashi; J D Tapia Takaki; A Tauro; G Tejeda Muñoz; A Telesca; C Terrevoli; J Thäder; J H Thomas; D Thomas; R Tieulent; A R Timmins; D Tlusty; A Toia; H Torii; L Toscano; F Tosello; T Traczyk; D Truesdale; W H Trzaska; T Tsuji; A Tumkin; R Turrisi; T S Tveter; J Ulery; K Ullaland; J Ulrich; A Uras; J Urbán; G M Urciuoli; G L Usai; M Vajzer; M Vala; L Valencia Palomo; S Vallero; N van der Kolk; P Vande Vyvre; M van Leeuwen; L Vannucci; A Vargas; R Varma; M Vasileiou; A Vasiliev; V Vechernin; M Veldhoen; M Venaruzzo; E Vercellin; S Vergara; D C Vernekohl; R Vernet; M Verweij; L Vickovic; G Viesti; O Vikhlyantsev; Z Vilakazi; O Villalobos Baillie; A Vinogradov; L Vinogradov; Y Vinogradov; T Virgili; Y P Viyogi; A Vodopyanov; K Voloshin; S Voloshin; G Volpe; B von Haller; D Vranic; J Vrláková; B Vulpescu; A Vyushin; V Wagner; B Wagner; R Wan; Y Wang; D Wang; Y Wang; M Wang; K Watanabe; J P Wessels; U Westerhoff; J Wiechula; J Wikne; M Wilde; G Wilk; A Wilk; M C S Williams; B Windelband; L Xaplanteris Karampatsos; H Yang; S Yano; S Yasnopolskiy; J Yi; Z Yin; H Yokoyama; I-K Yoo; J Yoon; W Yu; X Yuan; I Yushmanov; C Zach; C Zampolli; S Zaporozhets; A Zarochentsev; P Závada; N Zaviyalov; H Zbroszczyk; P Zelnicek; I Zgura; M Zhalov; X Zhang; F Zhou; D Zhou; Y Zhou; X Zhu; A Zichichi; A Zimmermann; G Zinovjev; Y Zoccarato; M Zynovyev
Journal:  Phys Rev Lett       Date:  2012-02-23       Impact factor: 9.161

3.  Study of B Meson Production in p+Pb Collisions at √[S(NN)]=5.02 TeV Using Exclusive Hadronic Decays.

Authors:  V Khachatryan; A M Sirunyan; A Tumasyan; W Adam; E Asilar; T Bergauer; J Brandstetter; E Brondolin; M Dragicevic; J Erö; M Flechl; M Friedl; R Frühwirth; V M Ghete; C Hartl; N Hörmann; J Hrubec; M Jeitler; V Knünz; A König; M Krammer; I Krätschmer; D Liko; T Matsushita; I Mikulec; D Rabady; B Rahbaran; H Rohringer; J Schieck; R Schöfbeck; J Strauss; W Treberer-Treberspurg; W Waltenberger; C-E Wulz; V Mossolov; N Shumeiko; J Suarez Gonzalez; S Alderweireldt; T Cornelis; E A De Wolf; X Janssen; A Knutsson; J Lauwers; S Luyckx; S Ochesanu; R Rougny; M Van De Klundert; H Van Haevermaet; P Van Mechelen; N Van Remortel; A Van Spilbeeck; S Abu Zeid; F Blekman; J D'Hondt; N Daci; I De Bruyn; K Deroover; N Heracleous; J Keaveney; S Lowette; L Moreels; A Olbrechts; Q Python; D Strom; S Tavernier; W Van Doninck; P Van Mulders; G P Van Onsem; I Van Parijs; P Barria; H Brun; C Caillol; B Clerbaux; G De Lentdecker; H Delannoy; G Fasanella; L Favart; A P R Gay; A Grebenyuk; G Karapostoli; T Lenzi; A Léonard; T Maerschalk; A Marinov; L Perniè; A Randle-Conde; T Reis; T Seva; C Vander Velde; P Vanlaer; R Yonamine; F Zenoni; F Zhang; K Beernaert; L Benucci; A Cimmino; S Crucy; D Dobur; A Fagot; G Garcia; M Gul; J Mccartin; A A Ocampo Rios; D Poyraz; D Ryckbosch; S Salva; M Sigamani; N Strobbe; M Tytgat; W Van Driessche; E Yazgan; N Zaganidis; S Basegmez; C Beluffi; O Bondu; S Brochet; G Bruno; R Castello; A Caudron; L Ceard; G G Da Silveira; C Delaere; D Favart; L Forthomme; A Giammanco; J Hollar; A Jafari; P Jez; M Komm; V Lemaitre; A Mertens; C Nuttens; L Perrini; A Pin; K Piotrzkowski; A Popov; L Quertenmont; M Selvaggi; M Vidal Marono; N Beliy; G H Hammad; W L Aldá Júnior; G A Alves; L Brito; M Correa Martins Junior; M Hamer; C Hensel; C Mora Herrera; A Moraes; M E Pol; P Rebello Teles; E Belchior Batista Das Chagas; W Carvalho; J Chinellato; A Custódio; E M Da Costa; D De Jesus Damiao; C De Oliveira Martins; S Fonseca De Souza; L M Huertas Guativa; H Malbouisson; D Matos Figueiredo; L Mundim; H Nogima; W L Prado Da Silva; A Santoro; A Sznajder; E J Tonelli Manganote; A Vilela Pereira; S Ahuja; C A Bernardes; A De Souza Santos; S Dogra; T R Fernandez Perez Tomei; E M Gregores; P G Mercadante; C S Moon; S F Novaes; Sandra S Padula; D Romero Abad; J C Ruiz Vargas; A Aleksandrov; R Hadjiiska; P Iaydjiev; M Rodozov; S Stoykova; G Sultanov; M Vutova; A Dimitrov; I Glushkov; L Litov; B Pavlov; P Petkov; M Ahmad; J G Bian; G M Chen; H S Chen; M Chen; T Cheng; R Du; C H Jiang; R Plestina; F Romeo; S M Shaheen; J Tao; C Wang; Z Wang; H Zhang; C Asawatangtrakuldee; Y Ban; Q Li; S Liu; Y Mao; S J Qian; D Wang; Z Xu; W Zou; C Avila; A Cabrera; L F Chaparro Sierra; C Florez; J P Gomez; B Gomez Moreno; J C Sanabria; N Godinovic; D Lelas; I Puljak; P M Ribeiro Cipriano; Z Antunovic; M Kovac; V Brigljevic; K Kadija; J Luetic; S Micanovic; L Sudic; A Attikis; G Mavromanolakis; J Mousa; C Nicolaou; F Ptochos; P A Razis; H Rykaczewski; M Bodlak; M Finger; M Finger; A A Abdelalim; A Awad; M El Sawy; A Mahrous; A Mohamed; A Radi; B Calpas; M Kadastik; M Murumaa; M Raidal; A Tiko; C Veelken; P Eerola; J Pekkanen; M Voutilainen; J Härkönen; V Karimäki; R Kinnunen; T Lampén; K Lassila-Perini; S Lehti; T Lindén; P Luukka; T Mäenpää; T Peltola; E Tuominen; J Tuominiemi; E Tuovinen; L Wendland; J Talvitie; T Tuuva; M Besancon; F Couderc; M Dejardin; D Denegri; B Fabbro; J L Faure; C Favaro; F Ferri; S Ganjour; A Givernaud; P Gras; G Hamel de Monchenault; P Jarry; E Locci; M Machet; J Malcles; J Rander; A Rosowsky; M Titov; A Zghiche; I Antropov; S Baffioni; F Beaudette; P Busson; L Cadamuro; E Chapon; C Charlot; T Dahms; O Davignon; N Filipovic; A Florent; R Granier de Cassagnac; S Lisniak; L Mastrolorenzo; P Miné; I N Naranjo; M Nguyen; C Ochando; G Ortona; P Paganini; P Pigard; S Regnard; R Salerno; J B Sauvan; Y Sirois; T Strebler; Y Yilmaz; A Zabi; J-L Agram; J Andrea; A Aubin; D Bloch; J-M Brom; M Buttignol; E C Chabert; N Chanon; C Collard; E Conte; X Coubez; J-C Fontaine; 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Y Erdogan; G Flügge; H Geenen; M Geisler; F Hoehle; B Kargoll; T Kress; Y Kuessel; A Künsken; J Lingemann; A Nehrkorn; A Nowack; I M Nugent; C Pistone; O Pooth; A Stahl; M Aldaya Martin; I Asin; N Bartosik; O Behnke; U Behrens; A J Bell; K Borras; A Burgmeier; A Cakir; L Calligaris; A Campbell; S Choudhury; F Costanza; C Diez Pardos; G Dolinska; S Dooling; T Dorland; G Eckerlin; D Eckstein; T Eichhorn; G Flucke; E Gallo; J Garay Garcia; A Geiser; A Gizhko; P Gunnellini; J Hauk; M Hempel; H Jung; A Kalogeropoulos; O Karacheban; M Kasemann; P Katsas; J Kieseler; C Kleinwort; I Korol; W Lange; J Leonard; K Lipka; A Lobanov; W Lohmann; R Mankel; I Marfin; I-A Melzer-Pellmann; A B Meyer; G Mittag; J Mnich; A Mussgiller; S Naumann-Emme; A Nayak; E Ntomari; H Perrey; D Pitzl; R Placakyte; A Raspereza; B Roland; M Ö Sahin; P Saxena; T Schoerner-Sadenius; M Schröder; C Seitz; S Spannagel; K D Trippkewitz; R Walsh; C Wissing; V Blobel; M Centis Vignali; A R Draeger; J Erfle; E Garutti; K Goebel; 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D Bourilkov; A Carnes; M Carver; D Curry; S Das; G P Di Giovanni; R D Field; I K Furic; J Hugon; J Konigsberg; A Korytov; J F Low; P Ma; K Matchev; H Mei; P Milenovic; G Mitselmakher; D Rank; R Rossin; L Shchutska; M Snowball; D Sperka; N Terentyev; J Wang; S Wang; J Yelton; S Hewamanage; S Linn; P Markowitz; G Martinez; J L Rodriguez; A Ackert; J R Adams; T Adams; A Askew; J Bochenek; B Diamond; J Haas; S Hagopian; V Hagopian; K F Johnson; A Khatiwada; H Prosper; V Veeraraghavan; M Weinberg; M M Baarmand; V Bhopatkar; M Hohlmann; H Kalakhety; D Noonan; T Roy; F Yumiceva; M R Adams; L Apanasevich; D Berry; R R Betts; I Bucinskaite; R Cavanaugh; O Evdokimov; L Gauthier; C E Gerber; D J Hofman; P Kurt; C O'Brien; I D Sandoval Gonzalez; C Silkworth; P Turner; N Varelas; Z Wu; M Zakaria; B Bilki; W Clarida; K Dilsiz; S Durgut; R P Gandrajula; M Haytmyradov; V Khristenko; J-P Merlo; H Mermerkaya; A Mestvirishvili; A Moeller; J Nachtman; H Ogul; Y Onel; F Ozok; A Penzo; C Snyder; P Tan; E Tiras; J Wetzel; K Yi; I Anderson; B A Barnett; B Blumenfeld; D Fehling; L Feng; A V Gritsan; P Maksimovic; C Martin; M Osherson; M Swartz; M Xiao; Y Xin; C You; P Baringer; A Bean; G Benelli; C Bruner; R P Kenny; D Majumder; M Malek; M Murray; S Sanders; R Stringer; Q Wang; A Ivanov; K Kaadze; S Khalil; M Makouski; Y Maravin; A Mohammadi; L K Saini; N Skhirtladze; S Toda; D Lange; F Rebassoo; D Wright; C Anelli; A Baden; O Baron; A Belloni; B Calvert; S C Eno; C Ferraioli; J A Gomez; N J Hadley; S Jabeen; R G Kellogg; T Kolberg; J Kunkle; Y Lu; A C Mignerey; Y H Shin; A Skuja; M B Tonjes; S C Tonwar; A Apyan; R Barbieri; A Baty; K Bierwagen; S Brandt; W Busza; I A Cali; Z Demiragli; L Di Matteo; G Gomez Ceballos; M Goncharov; D Gulhan; Y Iiyama; G M Innocenti; M Klute; D Kovalskyi; Y S Lai; Y-J Lee; A Levin; P D Luckey; A C Marini; C Mcginn; C Mironov; X Niu; C Paus; D Ralph; C Roland; G Roland; J Salfeld-Nebgen; G S F Stephans; K Sumorok; M Varma; D Velicanu; J Veverka; J Wang; T W Wang; B Wyslouch; M Yang; V Zhukova; B Dahmes; A Finkel; A Gude; P Hansen; S Kalafut; S C Kao; K Klapoetke; Y Kubota; Z Lesko; J Mans; S Nourbakhsh; N Ruckstuhl; R Rusack; N Tambe; J Turkewitz; J G Acosta; S Oliveros; E Avdeeva; K Bloom; S Bose; D R Claes; A Dominguez; C Fangmeier; R Gonzalez Suarez; R Kamalieddin; J Keller; D Knowlton; I Kravchenko; J Lazo-Flores; F Meier; J Monroy; F Ratnikov; J E Siado; G R Snow; M Alyari; J Dolen; J George; A Godshalk; C Harrington; I Iashvili; J Kaisen; A Kharchilava; A Kumar; S Rappoccio; G Alverson; E Barberis; D Baumgartel; M Chasco; A Hortiangtham; A Massironi; D M Morse; D Nash; T Orimoto; R Teixeira De Lima; D Trocino; R-J Wang; D Wood; J Zhang; K A Hahn; A Kubik; N Mucia; N Odell; B Pollack; A Pozdnyakov; M Schmitt; S Stoynev; K Sung; M Trovato; M Velasco; A Brinkerhoff; N Dev; M Hildreth; C Jessop; D J Karmgard; N Kellams; K Lannon; S Lynch; N Marinelli; F Meng; C Mueller; Y Musienko; T Pearson; M Planer; A Reinsvold; R Ruchti; G Smith; S Taroni; N Valls; M Wayne; M Wolf; A Woodard; L Antonelli; J Brinson; B Bylsma; L S Durkin; S Flowers; A Hart; C Hill; R Hughes; W Ji; K Kotov; T Y Ling; B Liu; W Luo; D Puigh; M Rodenburg; B L Winer; H W Wulsin; O Driga; P Elmer; J Hardenbrook; P Hebda; S A Koay; P Lujan; D Marlow; T Medvedeva; M Mooney; J Olsen; C Palmer; P Piroué; X Quan; H Saka; D Stickland; C Tully; J S Werner; A Zuranski; S Malik; V E Barnes; D Benedetti; D Bortoletto; L Gutay; M K Jha; M Jones; K Jung; M Kress; D H Miller; N Neumeister; B C Radburn-Smith; X Shi; I Shipsey; D Silvers; J Sun; A Svyatkovskiy; F Wang; W Xie; L Xu; N Parashar; J Stupak; A Adair; B Akgun; Z Chen; K M Ecklund; F J M Geurts; M Guilbaud; W Li; B Michlin; M Northup; B P Padley; R Redjimi; J Roberts; J Rorie; Z Tu; J Zabel; B Betchart; A Bodek; P de Barbaro; R Demina; Y Eshaq; T Ferbel; M Galanti; A Garcia-Bellido; J Han; A Harel; O Hindrichs; A Khukhunaishvili; G Petrillo; M Verzetti; L Demortier; S Arora; A Barker; J P Chou; C Contreras-Campana; E Contreras-Campana; D Duggan; D Ferencek; Y Gershtein; R Gray; E Halkiadakis; D Hidas; E Hughes; S Kaplan; R Kunnawalkam Elayavalli; A Lath; K Nash; S Panwalkar; M Park; S Salur; S Schnetzer; D Sheffield; S Somalwar; R Stone; S Thomas; P Thomassen; M Walker; M Foerster; G Riley; K Rose; S Spanier; A York; O Bouhali; A Castaneda Hernandez; M Dalchenko; M De Mattia; A Delgado; S Dildick; R Eusebi; W Flanagan; J Gilmore; T Kamon; V Krutelyov; R Montalvo; R Mueller; I Osipenkov; Y Pakhotin; R Patel; A Perloff; J Roe; A Rose; A Safonov; A Tatarinov; K A Ulmer; N Akchurin; C Cowden; J Damgov; C Dragoiu; P R Dudero; J Faulkner; S Kunori; K Lamichhane; S W Lee; T Libeiro; S Undleeb; I Volobouev; E Appelt; A G Delannoy; S Greene; A Gurrola; R Janjam; W Johns; C Maguire; Y Mao; A Melo; H Ni; P Sheldon; B Snook; S Tuo; J Velkovska; Q Xu; M W Arenton; S Boutle; B Cox; B Francis; J Goodell; R Hirosky; A Ledovskoy; H Li; C Lin; C Neu; E Wolfe; J Wood; F Xia; C Clarke; R Harr; P E Karchin; C Kottachchi Kankanamge Don; P Lamichhane; J Sturdy; D A Belknap; D Carlsmith; M Cepeda; A Christian; S Dasu; L Dodd; S Duric; E Friis; B Gomber; R Hall-Wilton; M Herndon; A Hervé; P Klabbers; A Lanaro; A Levine; K Long; R Loveless; A Mohapatra; I Ojalvo; T Perry; G A Pierro; G Polese; I Ross; T Ruggles; T Sarangi; A Savin; A Sharma; N Smith; W H Smith; D Taylor; N Woods
Journal:  Phys Rev Lett       Date:  2016-01-22       Impact factor: 9.161

4.  J/psi production versus centrality, transverse momentum, and rapidity in Au+Au collisions at square root sNN=200 GeV.

Authors:  A Adare; S Afanasiev; C Aidala; N N Ajitanand; Y Akiba; H Al-Bataineh; J Alexander; A Al-Jamel; K Aoki; L Aphecetche; R Armendariz; S H Aronson; J Asai; E T Atomssa; R Averbeck; T C Awes; B Azmoun; V Babintsev; G Baksay; L Baksay; A Baldisseri; K N Barish; P D Barnes; B Bassalleck; S Bathe; S Batsouli; V Baublis; F Bauer; A Bazilevsky; S Belikov; R Bennett; Y Berdnikov; A A Bickley; M T Bjorndal; J G Boissevain; H Borel; K Boyle; M L Brooks; D S Brown; D Bucher; H Buesching; V Bumazhnov; G Bunce; J M Burward-Hoy; S Butsyk; S Campbell; J-S Chai; B S Chang; J-L Charvet; S Chernichenko; J Chiba; C Y Chi; M Chiu; I J Choi; T Chujo; P Chung; A Churyn; V Cianciolo; C R Cleven; Y Cobigo; B A Cole; M P Comets; P Constantin; M Csanád; T Csörgo; T Dahms; K Das; G David; M B Deaton; K Dehmelt; H Delagrange; A Denisov; D d'Enterria; A Deshpande; E J Desmond; O Dietzsch; A Dion; M Donadelli; J L Drachenberg; O Drapier; A Drees; A K Dubey; A Durum; V Dzhordzhadze; Y V Efremenko; J Egdemir; F Ellinghaus; W S Emam; A Enokizono; H En'yo; B Espagnon; S Esumi; K O Eyser; D E Fields; M Finger; F Fleuret; S L Fokin; B Forestier; Z Fraenkel; J E Frantz; A Franz; A D Frawley; K Fujiwara; Y Fukao; S-Y Fung; T Fusayasu; S Gadrat; I Garishvili; F Gastineau; M Germain; A Glenn; H Gong; M Gonin; J Gosset; Y Goto; R Granier de Cassagnac; N Grau; S V Greene; M Grosse Perdekamp; T Gunji; H-A Gustafsson; T Hachiya; A Hadj Henni; C Haegemann; J S Haggerty; M N Hagiwara; H Hamagaki; R Han; H Harada; E P Hartouni; K Haruna; M Harvey; E Haslum; K Hasuko; R Hayano; M Heffner; T K Hemmick; T Hester; J M Heuser; X He; H Hiejima; J C Hill; R Hobbs; M Hohlmann; M Holmes; W Holzmann; K Homma; B Hong; T Horaguchi; D Hornback; M G Hur; T Ichihara; K Imai; M Inaba; Y Inoue; D Isenhower; L Isenhower; M Ishihara; T Isobe; M Issah; A Isupov; B V Jacak; J Jia; J Jin; O Jinnouchi; B M Johnson; K S Joo; D Jouan; F Kajihara; S Kametani; N Kamihara; J Kamin; M Kaneta; J H Kang; H Kanou; T Kawagishi; D Kawall; A V Kazantsev; S Kelly; A Khanzadeev; J Kikuchi; D H Kim; D J Kim; E Kim; Y-S Kim; E Kinney; A Kiss; E Kistenev; A Kiyomichi; J Klay; C Klein-Boesing; L Kochenda; V Kochetkov; B Komkov; M Konno; D Kotchetkov; A Kozlov; A Král; A Kravitz; P J Kroon; J Kubart; G J Kunde; N Kurihara; K Kurita; M J Kweon; Y Kwon; G S Kyle; R Lacey; Y-S Lai; J G Lajoie; A Lebedev; Y Le Bornec; S Leckey; D M Lee; M K Lee; T Lee; M J Leitch; M A L Leite; B Lenzi; H Lim; T Liska; A Litvinenko; M X Liu; X Li; X H Li; B Love; D Lynch; C F Maguire; Y I Makdisi; A Malakhov; M D Malik; V I Manko; Y Mao; L Masek; H Masui; F Matathias; M C McCain; M McCumber; P L McGaughey; Y Miake; P Mikes; K Miki; T E Miller; A Milov; S Mioduszewski; G C Mishra; M Mishra; J T Mitchell; M Mitrovski; A Morreale; D P Morrison; J M Moss; T V Moukhanova; D Mukhopadhyay; J Murata; S Nagamiya; Y Nagata; J L Nagle; M Naglis; I Nakagawa; Y Nakamiya; T Nakamura; K Nakano; J Newby; M Nguyen; B E Norman; A S Nyanin; J Nystrand; E O'Brien; S X Oda; C A Ogilvie; H Ohnishi; I D Ojha; H Okada; K Okada; M Oka; O O Omiwade; A Oskarsson; I Otterlund; M Ouchida; K Ozawa; R Pak; D Pal; A P T Palounek; V Pantuev; V Papavassiliou; J Park; W J Park; S F Pate; H Pei; J-C Peng; H Pereira; V Peresedov; D Yu Peressounko; C Pinkenburg; R P Pisani; M L Purschke; A K Purwar; H Qu; J Rak; A Rakotozafindrabe; I Ravinovich; K F Read; S Rembeczki; M Reuter; K Reygers; V Riabov; Y Riabov; G Roche; A Romana; M Rosati; S S E Rosendahl; P Rosnet; P Rukoyatkin; V L Rykov; S S Ryu; B Sahlmueller; N Saito; T Sakaguchi; S Sakai; H Sakata; V Samsonov; H D Sato; S Sato; S Sawada; J Seele; R Seidl; V Semenov; R Seto; D Sharma; T K Shea; I Shein; A Shevel; T-A Shibata; K Shigaki; M Shimomura; T Shohjoh; K Shoji; A Sickles; C L Silva; D Silvermyr; C Silvestre; K S Sim; C P Singh; V Singh; S Skutnik; M Slunecka; W C Smith; A Soldatov; R A Soltz; W E Sondheim; S P Sorensen; I V Sourikova; F Staley; P W Stankus; E Stenlund; M Stepanov; A Ster; S P Stoll; T Sugitate; C Suire; J P Sullivan; J Sziklai; T Tabaru; S Takagi; E M Takagui; A Taketani; K H Tanaka; Y Tanaka; K Tanida; M J Tannenbaum; A Taranenko; P Tarján; T L Thomas; M Togawa; A Toia; J Tojo; L Tomásek; H Torii; R S Towell; V-N Tram; I Tserruya; Y Tsuchimoto; S K Tuli; H Tydesjö; N Tyurin; C Vale; H Valle; H W van Hecke; J Velkovska; R Vertesi; A A Vinogradov; M Virius; V Vrba; E Vznuzdaev; M Wagner; D Walker; X R Wang; Y Watanabe; J Wessels; S N White; N Willis; D Winter; C L Woody; M Wysocki; W Xie; Y Yamaguchi; A Yanovich; Z Yasin; J Ying; S Yokkaichi; G R Young; I Younus; I E Yushmanov; W A Zajc; O Zaudtke; C Zhang; S Zhou; J Zimányi; L Zolin
Journal:  Phys Rev Lett       Date:  2007-06-04       Impact factor: 9.161

5.  Measurement of J/ψ and ψ(2S) Prompt Double-Differential Cross Sections in pp Collisions at sqrt[s]=7 TeV.

Authors:  V Khachatryan; A M Sirunyan; A Tumasyan; W Adam; T Bergauer; M Dragicevic; J Erö; M Friedl; R Frühwirth; V M Ghete; C Hartl; N Hörmann; J Hrubec; M Jeitler; W Kiesenhofer; V Knünz; M Krammer; I Krätschmer; D Liko; I Mikulec; D Rabady; B Rahbaran; H Rohringer; R Schöfbeck; J Strauss; W Treberer-Treberspurg; W Waltenberger; C-E Wulz; V Mossolov; N Shumeiko; J Suarez Gonzalez; S Alderweireldt; S Bansal; T Cornelis; E A De Wolf; X Janssen; A Knutsson; J Lauwers; S Luyckx; S Ochesanu; R Rougny; M Van De Klundert; H Van Haevermaet; P Van Mechelen; N Van Remortel; A Van Spilbeeck; F Blekman; S Blyweert; J D'Hondt; N Daci; N Heracleous; J Keaveney; S Lowette; M Maes; A Olbrechts; Q Python; D Strom; S Tavernier; W Van Doninck; P Van Mulders; G P Van Onsem; I Villella; C Caillol; B Clerbaux; G De Lentdecker; D Dobur; L Favart; A P R Gay; A Grebenyuk; A Léonard; A Mohammadi; L Perniè; A Randle-Conde; T Reis; T Seva; L Thomas; C Vander Velde; P Vanlaer; J Wang; F Zenoni; V Adler; K Beernaert; L Benucci; A Cimmino; S Costantini; S Crucy; A Fagot; G Garcia; J Mccartin; A A Ocampo Rios; D Poyraz; D Ryckbosch; S Salva Diblen; M Sigamani; N Strobbe; F Thyssen; M Tytgat; E Yazgan; N Zaganidis; S Basegmez; C Beluffi; G Bruno; R Castello; A Caudron; L Ceard; G G Da Silveira; C Delaere; T du Pree; D Favart; L Forthomme; A Giammanco; J Hollar; A Jafari; P Jez; M Komm; V Lemaitre; C Nuttens; D Pagano; L Perrini; A Pin; K Piotrzkowski; A Popov; L Quertenmont; M Selvaggi; M Vidal Marono; J M Vizan Garcia; N Beliy; T Caebergs; E Daubie; G H Hammad; W L Aldá Júnior; G A Alves; L Brito; M Correa Martins Junior; T Dos Reis Martins; J Molina; C Mora Herrera; M E Pol; P Rebello Teles; W Carvalho; J Chinellato; A Custódio; E M Da Costa; D De Jesus Damiao; C De Oliveira Martins; S Fonseca De Souza; H Malbouisson; D Matos Figueiredo; L Mundim; H Nogima; W L Prado Da Silva; J Santaolalla; A Santoro; A Sznajder; E J Tonelli Manganote; A Vilela Pereira; C A Bernardes; S Dogra; T R Fernandez Perez Tomei; E M Gregores; P G Mercadante; S F Novaes; Sandra S Padula; A Aleksandrov; V Genchev; R Hadjiiska; P Iaydjiev; A Marinov; S Piperov; M Rodozov; S Stoykova; G Sultanov; M Vutova; A Dimitrov; I Glushkov; L Litov; B Pavlov; P Petkov; J G Bian; G M Chen; H S Chen; M Chen; T Cheng; R Du; C H Jiang; R Plestina; F Romeo; J Tao; Z Wang; C Asawatangtrakuldee; Y Ban; W Guo; S Liu; Y Mao; S J Qian; D Wang; Z Xu; F Zhang; L Zhang; W Zou; C Avila; A Cabrera; L F Chaparro Sierra; C Florez; J P Gomez; B Gomez Moreno; J C Sanabria; N Godinovic; D Lelas; D Polic; I Puljak; Z Antunovic; M Kovac; V Brigljevic; K Kadija; J Luetic; D Mekterovic; L Sudic; A Attikis; G Mavromanolakis; J Mousa; C Nicolaou; F Ptochos; P A Razis; H Rykaczewski; M Bodlak; M Finger; M Finger; Y Assran; A Ellithi Kamel; M A Mahmoud; A Radi; M Kadastik; M Murumaa; M Raidal; A Tiko; P Eerola; M Voutilainen; J Härkönen; V Karimäki; R Kinnunen; M J Kortelainen; T Lampén; K Lassila-Perini; S Lehti; T Lindén; P Luukka; T Mäenpää; T Peltola; E Tuominen; J Tuominiemi; E Tuovinen; L Wendland; J Talvitie; T Tuuva; M Besancon; F Couderc; M Dejardin; D Denegri; B Fabbro; J L Faure; C Favaro; F Ferri; S Ganjour; A Givernaud; P Gras; G Hamel de Monchenault; P Jarry; E Locci; J Malcles; J Rander; A Rosowsky; M Titov; S Baffioni; F Beaudette; P Busson; E Chapon; C Charlot; T Dahms; L Dobrzynski; N Filipovic; A Florent; R Granier de Cassagnac; L Mastrolorenzo; P Miné; I N Naranjo; M Nguyen; C Ochando; G Ortona; P Paganini; S Regnard; R Salerno; J B Sauvan; Y Sirois; C Veelken; Y Yilmaz; A Zabi; J-L Agram; J Andrea; A Aubin; D Bloch; J-M Brom; E C Chabert; C Collard; E Conte; J-C Fontaine; D Gelé; U Goerlach; C Goetzmann; A-C Le Bihan; K Skovpen; P Van Hove; S Gadrat; S Beauceron; N Beaupere; C Bernet; G Boudoul; E Bouvier; S Brochet; C A Carrillo Montoya; J Chasserat; R Chierici; D Contardo; B Courbon; P Depasse; H El Mamouni; J Fan; J Fay; S Gascon; M Gouzevitch; B Ille; T Kurca; M Lethuillier; L Mirabito; A L Pequegnot; S Perries; J D Ruiz Alvarez; D Sabes; L Sgandurra; V Sordini; M Vander Donckt; P Verdier; S Viret; H Xiao; Z Tsamalaidze; C Autermann; S Beranek; M Bontenackels; M Edelhoff; L Feld; A Heister; K Klein; M Lipinski; A Ostapchuk; M Preuten; F Raupach; J Sammet; S Schael; J F Schulte; H Weber; B Wittmer; V Zhukov; M Ata; M Brodski; E Dietz-Laursonn; D Duchardt; M Erdmann; R Fischer; A Güth; T Hebbeker; C Heidemann; K Hoepfner; D Klingebiel; S Knutzen; P Kreuzer; M Merschmeyer; A Meyer; P Millet; M Olschewski; K Padeken; P Papacz; H Reithler; S A Schmitz; L Sonnenschein; D Teyssier; S Thüer; V Cherepanov; Y Erdogan; G Flügge; H Geenen; M Geisler; W Haj Ahmad; F Hoehle; B Kargoll; T Kress; Y Kuessel; A Künsken; J Lingemann; A Nowack; I M Nugent; C Pistone; O Pooth; A Stahl; M Aldaya Martin; I Asin; N Bartosik; J Behr; U Behrens; A J Bell; A Bethani; K Borras; A Burgmeier; A Cakir; L Calligaris; A Campbell; S Choudhury; F Costanza; C Diez Pardos; G Dolinska; S Dooling; T Dorland; G Eckerlin; D Eckstein; T Eichhorn; G Flucke; J Garay Garcia; A Geiser; A Gizhko; P Gunnellini; J Hauk; M Hempel; H Jung; A Kalogeropoulos; O Karacheban; M Kasemann; P Katsas; J Kieseler; C Kleinwort; I Korol; D Krücker; W Lange; J Leonard; K Lipka; A Lobanov; W Lohmann; B Lutz; R Mankel; I Marfin; I-A Melzer-Pellmann; A B Meyer; G Mittag; J Mnich; A Mussgiller; S Naumann-Emme; A Nayak; E Ntomari; H Perrey; D Pitzl; R Placakyte; A Raspereza; P M Ribeiro Cipriano; B Roland; E Ron; M Ö Sahin; J Salfeld-Nebgen; P Saxena; T Schoerner-Sadenius; M Schröder; C Seitz; S Spannagel; A D R Vargas Trevino; R Walsh; C Wissing; V Blobel; M Centis Vignali; A R Draeger; J Erfle; E Garutti; K Goebel; M Görner; J Haller; M Hoffmann; R S Höing; A Junkes; H Kirschenmann; R Klanner; R Kogler; T Lapsien; T Lenz; I Marchesini; D Marconi; J Ott; T Peiffer; A Perieanu; N Pietsch; J Poehlsen; T Poehlsen; D Rathjens; C Sander; H Schettler; P Schleper; E Schlieckau; A Schmidt; M Seidel; V Sola; H Stadie; G Steinbrück; D Troendle; E Usai; L Vanelderen; A Vanhoefer; C Barth; C Baus; J Berger; C Böser; E Butz; T Chwalek; W De Boer; A Descroix; A Dierlamm; M Feindt; F Frensch; M Giffels; A Gilbert; F Hartmann; T Hauth; U Husemann; I Katkov; A Kornmayer; P Lobelle Pardo; M U Mozer; T Müller; Th Müller; A Nürnberg; G Quast; K Rabbertz; S Röcker; H J Simonis; F M Stober; R Ulrich; J Wagner-Kuhr; S Wayand; T Weiler; R Wolf; G Anagnostou; G Daskalakis; T Geralis; V A Giakoumopoulou; A Kyriakis; D Loukas; A Markou; C Markou; A Psallidas; I Topsis-Giotis; A Agapitos; S Kesisoglou; A Panagiotou; N Saoulidou; E Stiliaris; E Tziaferi; X Aslanoglou; I Evangelou; G Flouris; C Foudas; P Kokkas; N Manthos; I Papadopoulos; E Paradas; J Strologas; G Bencze; C Hajdu; P Hidas; D Horvath; F Sikler; V Veszpremi; G Vesztergombi; A J Zsigmond; N Beni; S Czellar; J Karancsi; J Molnar; J Palinkas; Z Szillasi; A Makovec; P Raics; Z L Trocsanyi; B Ujvari; S K Swain; S B Beri; V Bhatnagar; R Gupta; U Bhawandeep; A K Kalsi; M Kaur; R Kumar; M Mittal; N Nishu; J B Singh; Ashok Kumar; Arun Kumar; S Ahuja; A Bhardwaj; B C Choudhary; A Kumar; S Malhotra; M Naimuddin; K Ranjan; V Sharma; S Banerjee; S Bhattacharya; K Chatterjee; S Dutta; B Gomber; Sa Jain; Sh Jain; R Khurana; A Modak; S Mukherjee; D Roy; S Sarkar; M Sharan; A Abdulsalam; D Dutta; V Kumar; A K Mohanty; L M Pant; P Shukla; A Topkar; T Aziz; S Banerjee; S Bhowmik; R M Chatterjee; R K Dewanjee; S Dugad; S Ganguly; S Ghosh; M Guchait; A Gurtu; G Kole; S Kumar; M Maity; G Majumder; K Mazumdar; G B Mohanty; B Parida; K Sudhakar; N Wickramage; S Sharma; H Bakhshiansohi; H Behnamian; S M Etesami; A Fahim; R Goldouzian; M Khakzad; M Mohammadi Najafabadi; M Naseri; S Paktinat Mehdiabadi; F Rezaei Hosseinabadi; B Safarzadeh; M Zeinali; M Felcini; M Grunewald; M Abbrescia; C Calabria; S S Chhibra; A Colaleo; D Creanza; L Cristella; N De Filippis; M De Palma; L Fiore; G Iaselli; G Maggi; M Maggi; S My; S Nuzzo; A Pompili; G Pugliese; R Radogna; G Selvaggi; A Sharma; L Silvestris; R Venditti; 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L Shchutska; M Snowball; D Sperka; J Yelton; M Zakaria; S Hewamanage; S Linn; P Markowitz; G Martinez; J L Rodriguez; J R Adams; T Adams; A Askew; J Bochenek; B Diamond; J Haas; S Hagopian; V Hagopian; K F Johnson; H Prosper; V Veeraraghavan; M Weinberg; M M Baarmand; M Hohlmann; H Kalakhety; F Yumiceva; M R Adams; L Apanasevich; D Berry; R R Betts; I Bucinskaite; R Cavanaugh; O Evdokimov; L Gauthier; C E Gerber; D J Hofman; P Kurt; C O'Brien; I D Sandoval Gonzalez; C Silkworth; P Turner; N Varelas; B Bilki; W Clarida; K Dilsiz; M Haytmyradov; V Khristenko; J-P Merlo; H Mermerkaya; A Mestvirishvili; A Moeller; J Nachtman; H Ogul; Y Onel; F Ozok; A Penzo; R Rahmat; S Sen; P Tan; E Tiras; J Wetzel; K Yi; I Anderson; B A Barnett; B Blumenfeld; S Bolognesi; D Fehling; A V Gritsan; P Maksimovic; C Martin; M Swartz; M Xiao; P Baringer; A Bean; G Benelli; C Bruner; J Gray; R P Kenny; D Majumder; M Malek; M Murray; D Noonan; S Sanders; J Sekaric; R Stringer; Q Wang; J S Wood; I Chakaberia; A Ivanov; 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Journal:  Phys Rev Lett       Date:  2015-05-14       Impact factor: 9.161

6.  J/ψ suppression in p-A collisions from parton energy loss in cold QCD matter.

Authors:  François Arleo; Stéphane Peigné
Journal:  Phys Rev Lett       Date:  2012-09-18       Impact factor: 9.161

7.  Observation of sequential Υ suppression in PbPb collisions.

Authors:  S Chatrchyan; V Khachatryan; A M Sirunyan; A Tumasyan; W Adam; E Aguilo; T Bergauer; M Dragicevic; J Erö; C Fabjan; M Friedl; R Frühwirth; V M Ghete; J Hammer; N Hörmann; J Hrubec; M Jeitler; W Kiesenhofer; V Knünz; M Krammer; I Krätschmer; D Liko; I Mikulec; M Pernicka; B Rahbaran; C Rohringer; H Rohringer; R Schöfbeck; J Strauss; A Taurok; W Waltenberger; G Walzel; E Widl; C-E Wulz; V Mossolov; N Shumeiko; J Suarez Gonzalez; S Bansal; T Cornelis; E A De Wolf; X Janssen; S Luyckx; L Mucibello; S Ochesanu; B Roland; R Rougny; M Selvaggi; Z Staykova; H Van Haevermaet; P Van Mechelen; N Van Remortel; A Van Spilbeeck; F Blekman; S Blyweert; J D'Hondt; R Gonzalez Suarez; A Kalogeropoulos; M Maes; A Olbrechts; W Van Doninck; P Van Mulders; G P Van Onsem; I Villella; B Clerbaux; G De Lentdecker; V Dero; A P R Gay; T Hreus; A Léonard; P E Marage; T Reis; L Thomas; C Vander Velde; P Vanlaer; J Wang; V Adler; K Beernaert; A Cimmino; S Costantini; G Garcia; M Grunewald; B Klein; J Lellouch; A Marinov; J McCartin; A A Ocampo Rios; D Ryckbosch; N Strobbe; F Thyssen; M Tytgat; P Verwilligen; S Walsh; E Yazgan; N Zaganidis; S Basegmez; G Bruno; R Castello; L Ceard; C Delaere; T du Pree; D Favart; L Forthomme; A Giammanco; J Hollar; V Lemaitre; J Liao; O Militaru; C Nuttens; D Pagano; A Pin; K Piotrzkowski; N Schul; J M Vizan Garcia; N Beliy; T Caebergs; E Daubie; G H Hammad; G A Alves; M Correa Martins; D De Jesus Damiao; T Martins; M E Pol; M H G Souza; W L Aldá; W Carvalho; A Custódio; E M Da Costa; C De Oliveira Martins; S Fonseca De Souza; D Matos Figueiredo; L Mundim; H Nogima; V Oguri; W L Prado Da Silva; A Santoro; L Soares Jorge; A Sznajder; T S Anjos; C A Bernardes; F A Dias; T R Fernandez Perez Tomei; E M Gregores; C Lagana; F Marinho; P G Mercadante; S F Novaes; Sandra S Padula; V Genchev; P Iaydjiev; S Piperov; M Rodozov; S Stoykova; G Sultanov; V Tcholakov; R Trayanov; M Vutova; A Dimitrov; R Hadjiiska; V Kozhuharov; L Litov; B Pavlov; P Petkov; J G Bian; G M Chen; H S Chen; C H Jiang; D Liang; S Liang; X Meng; J Tao; J Wang; X Wang; Z Wang; H Xiao; M Xu; J Zang; Z Zhang; C Asawatangtrakuldee; Y Ban; S Guo; Y Guo; W Li; S Liu; Y Mao; S J Qian; H Teng; D Wang; L Zhang; B Zhu; W Zou; C Avila; J P Gomez; B Gomez Moreno; A F Osorio Oliveros; J C Sanabria; N Godinovic; D Lelas; R Plestina; D Polic; I Puljak; Z Antunovic; M Kovac; V Brigljevic; S Duric; K Kadija; J Luetic; S Morovic; A Attikis; M Galanti; G Mavromanolakis; J Mousa; C Nicolaou; F Ptochos; P A Razis; M Finger; M Finger; Y Assran; S Elgammal; A Ellithi Kamel; S Khalil; M A Mahmoud; A Radi; M Kadastik; M Müntel; M Raidal; L Rebane; A Tiko; P Eerola; G Fedi; M Voutilainen; J Härkönen; A Heikkinen; V Karimäki; R Kinnunen; M J Kortelainen; T Lampén; K Lassila-Perini; S Lehti; T Lindén; P Luukka; T Mäenpää; T Peltola; E Tuominen; J Tuominiemi; E Tuovinen; D Ungaro; L Wendland; K Banzuzi; A Karjalainen; A Korpela; T Tuuva; M Besancon; S Choudhury; M Dejardin; D Denegri; B Fabbro; J L Faure; F Ferri; S Ganjour; A Givernaud; P Gras; G Hamel de Monchenault; P Jarry; E Locci; J Malcles; L Millischer; A Nayak; J Rander; A Rosowsky; I Shreyber; M Titov; S Baffioni; F Beaudette; L Benhabib; L Bianchini; M Bluj; C Broutin; P Busson; C Charlot; N Daci; T Dahms; L Dobrzynski; R Granier de Cassagnac; M Haguenauer; P Miné; C Mironov; I N Naranjo; M Nguyen; C Ochando; P Paganini; D Sabes; R Salerno; Y Sirois; C Veelken; A Zabi; J-L Agram; J Andrea; D Bloch; D Bodin; J-M Brom; M Cardaci; E C Chabert; C Collard; E Conte; F Drouhin; C Ferro; J-C Fontaine; D Gelé; U Goerlach; P Juillot; A-C Le Bihan; P Van Hove; F Fassi; D Mercier; S Beauceron; N Beaupere; O Bondu; G Boudoul; J Chasserat; R Chierici; D Contardo; P Depasse; H El Mamouni; J Fay; S Gascon; M Gouzevitch; B Ille; T Kurca; M Lethuillier; L Mirabito; S Perries; V Sordini; Y Tschudi; P Verdier; S Viret; Z Tsamalaidze; G Anagnostou; S Beranek; M Edelhoff; L Feld; N Heracleous; O Hindrichs; R Jussen; K Klein; J Merz; A Ostapchuk; A Perieanu; F Raupach; J Sammet; S Schael; D Sprenger; H Weber; B Wittmer; V Zhukov; M Ata; J Caudron; E Dietz-Laursonn; D Duchardt; M Erdmann; R Fischer; A Güth; T Hebbeker; C Heidemann; K Hoepfner; D Klingebiel; P Kreuzer; C Magass; M Merschmeyer; A Meyer; M Olschewski; P Papacz; H Pieta; H Reithler; S A Schmitz; L Sonnenschein; J Steggemann; D Teyssier; M Weber; M Bontenackels; V Cherepanov; G Flügge; H Geenen; M Geisler; W Haj Ahmad; F Hoehle; B Kargoll; T Kress; Y Kuessel; A Nowack; L Perchalla; O Pooth; P Sauerland; A Stahl; M Aldaya Martin; J Behr; W Behrenhoff; U Behrens; M Bergholz; A Bethani; K Borras; A Burgmeier; A Cakir; L Calligaris; A Campbell; E Castro; F Costanza; D Dammann; C Diez Pardos; G Eckerlin; D Eckstein; G Flucke; A Geiser; I Glushkov; P Gunnellini; S Habib; J Hauk; G Hellwig; H Jung; M Kasemann; P Katsas; C Kleinwort; H Kluge; A Knutsson; M Krämer; D Krücker; E Kuznetsova; W Lange; W Lohmann; B Lutz; R Mankel; I Marfin; M Marienfeld; I-A Melzer-Pellmann; A B Meyer; J Mnich; 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G Kukartsev; E Laird; G Landsberg; M Luk; M Narain; D Nguyen; M Segala; T Sinthuprasith; T Speer; K V Tsang; R Breedon; G Breto; M Calderon De La Barca Sanchez; S Chauhan; M Chertok; J Conway; R Conway; P T Cox; J Dolen; R Erbacher; M Gardner; R Houtz; W Ko; A Kopecky; R Lander; T Miceli; D Pellett; F Ricci-tam; B Rutherford; M Searle; J Smith; M Squires; M Tripathi; R Vasquez Sierra; V Andreev; D Cline; R Cousins; J Duris; S Erhan; P Everaerts; C Farrell; J Hauser; M Ignatenko; C Jarvis; C Plager; G Rakness; P Schlein; P Traczyk; V Valuev; M Weber; J Babb; R Clare; M E Dinardo; J Ellison; J W Gary; F Giordano; G Hanson; G Y Jeng; H Liu; O R Long; A Luthra; H Nguyen; S Paramesvaran; J Sturdy; S Sumowidagdo; R Wilken; S Wimpenny; W Andrews; J G Branson; G B Cerati; S Cittolin; D Evans; F Golf; A Holzner; R Kelley; M Lebourgeois; J Letts; I Macneill; B Mangano; S Padhi; C Palmer; G Petrucciani; M Pieri; M Sani; V Sharma; S Simon; E Sudano; M Tadel; Y Tu; A Vartak; S Wasserbaech; F Würthwein; A Yagil; J Yoo; D Barge; R Bellan; C Campagnari; M D'Alfonso; T Danielson; K Flowers; P Geffert; J Incandela; C Justus; P Kalavase; S A Koay; D Kovalskyi; V Krutelyov; S Lowette; N McColl; V Pavlunin; F Rebassoo; J Ribnik; J Richman; R Rossin; D Stuart; W To; C West; A Apresyan; A Bornheim; Y Chen; E Di Marco; J Duarte; M Gataullin; Y Ma; A Mott; H B Newman; C Rogan; M Spiropulu; V Timciuc; J Veverka; R Wilkinson; Y Yang; R Y Zhu; B Akgun; V Azzolini; R Carroll; T Ferguson; Y Iiyama; D W Jang; Y F Liu; M Paulini; H Vogel; I Vorobiev; J P Cumalat; B R Drell; C J Edelmaier; W T Ford; A Gaz; B Heyburn; E Luiggi Lopez; J G Smith; K Stenson; K A Ulmer; S R Wagner; J Alexander; A Chatterjee; N Eggert; L K Gibbons; B Heltsley; A Khukhunaishvili; B Kreis; N Mirman; G Nicolas Kaufman; J R Patterson; A Ryd; E Salvati; W Sun; W D Teo; J Thom; J Thompson; J Tucker; J Vaughan; Y Weng; L Winstrom; P Wittich; D Winn; S Abdullin; M Albrow; J Anderson; L A T Bauerdick; A Beretvas; J Berryhill; P C Bhat; I Bloch; K Burkett; J N Butler; V Chetluru; H W K Cheung; F Chlebana; V D Elvira; I Fisk; J Freeman; Y Gao; D Green; O Gutsche; J Hanlon; R M Harris; J Hirschauer; B Hooberman; S Jindariani; M Johnson; U Joshi; B Kilminster; B Klima; S Kunori; S Kwan; C Leonidopoulos; J Linacre; D Lincoln; R Lipton; J Lykken; K Maeshima; J M Marraffino; S Maruyama; D Mason; P McBride; K Mishra; S Mrenna; Y Musienko; C Newman-Holmes; V O'Dell; O Prokofyev; E Sexton-Kennedy; S Sharma; W J Spalding; L Spiegel; P Tan; L Taylor; S Tkaczyk; N V Tran; L Uplegger; E W Vaandering; R Vidal; J Whitmore; W Wu; F Yang; F Yumiceva; J C Yun; D Acosta; P Avery; D Bourilkov; M Chen; T Cheng; S Das; M De Gruttola; G P Di Giovanni; D Dobur; A Drozdetskiy; R D Field; M Fisher; Y Fu; I K Furic; J Gartner; J Hugon; B Kim; J Konigsberg; A Korytov; A Kropivnitskaya; T Kypreos; J F Low; K Matchev; P Milenovic; G Mitselmakher; L Muniz; R Remington; A Rinkevicius; P Sellers; N Skhirtladze; M Snowball; J Yelton; M Zakaria; V Gaultney; S Hewamanage; L M Lebolo; S Linn; P Markowitz; G Martinez; J L Rodriguez; T Adams; A Askew; J Bochenek; J Chen; B Diamond; S V Gleyzer; J Haas; S Hagopian; V Hagopian; M Jenkins; K F Johnson; H Prosper; V Veeraraghavan; M Weinberg; M M Baarmand; B Dorney; M Hohlmann; H Kalakhety; I Vodopiyanov; M R Adams; I M Anghel; L Apanasevich; Y Bai; V E Bazterra; R R Betts; I Bucinskaite; J Callner; R Cavanaugh; C Dragoiu; O Evdokimov; L Gauthier; C E Gerber; D J Hofman; S Khalatyan; F Lacroix; M Malek; C O'Brien; C Silkworth; D Strom; N Varelas; U Akgun; E A Albayrak; B Bilki; W Clarida; F Duru; S Griffiths; J-P Merlo; H Mermerkaya; A Mestvirishvili; A Moeller; J Nachtman; C R Newsom; E Norbeck; Y Onel; F Ozok; S Sen; E Tiras; J Wetzel; T Yetkin; K Yi; B A Barnett; B Blumenfeld; S Bolognesi; D Fehling; G Giurgiu; A V Gritsan; Z J Guo; G Hu; P Maksimovic; S Rappoccio; M Swartz; A Whitbeck; P Baringer; A Bean; G Benelli; O Grachov; R P Kenny; M Murray; D Noonan; S Sanders; R Stringer; G Tinti; J S Wood; V Zhukova; A F Barfuss; T Bolton; I Chakaberia; A Ivanov; S Khalil; M Makouski; Y Maravin; S Shrestha; I Svintradze; J Gronberg; D Lange; D Wright; A Baden; M Boutemeur; B Calvert; S C Eno; J A Gomez; N J Hadley; R G Kellogg; M Kirn; T Kolberg; Y Lu; M Marionneau; A C Mignerey; K Pedro; A Peterman; A Skuja; J Temple; M B Tonjes; S C Tonwar; E Twedt; A Apyan; G Bauer; J Bendavid; W Busza; E Butz; I A Cali; M Chan; V Dutta; G Gomez Ceballos; M Goncharov; K A Hahn; Y Kim; M Klute; K Krajczar; W Li; P D Luckey; T Ma; S Nahn; C Paus; D Ralph; C Roland; G Roland; M Rudolph; G S F Stephans; F Stöckli; K Sumorok; K Sung; D Velicanu; E A Wenger; R Wolf; B Wyslouch; S Xie; M Yang; Y Yilmaz; A S Yoon; M Zanetti; S I Cooper; B Dahmes; A De Benedetti; G Franzoni; A Gude; S C Kao; K Klapoetke; Y Kubota; J Mans; N Pastika; R Rusack; M Sasseville; A Singovsky; N Tambe; J Turkewitz; L M Cremaldi; R Kroeger; L Perera; R Rahmat; D A Sanders; E Avdeeva; K Bloom; S Bose; J Butt; D R Claes; A Dominguez; M Eads; J Keller; I Kravchenko; J Lazo-Flores; H Malbouisson; S Malik; G R Snow; U Baur; A Godshalk; I Iashvili; S Jain; A Kharchilava; A Kumar; S P Shipkowski; K Smith; G Alverson; E Barberis; D Baumgartel; M Chasco; J Haley; D Nash; D Trocino; D Wood; J Zhang; A Anastassov; A Kubik; N Mucia; N Odell; R A Ofierzynski; B Pollack; A Pozdnyakov; M Schmitt; S Stoynev; M Velasco; S Won; L Antonelli; D Berry; A Brinkerhoff; M Hildreth; C Jessop; D J Karmgard; J Kolb; K Lannon; W Luo; S Lynch; N Marinelli; D M Morse; T Pearson; R Ruchti; J Slaunwhite; N Valls; M Wayne; M Wolf; B Bylsma; L S Durkin; C Hill; R Hughes; R Hughes; K Kotov; T Y Ling; D Puigh; M Rodenburg; C Vuosalo; G Williams; B L Winer; N Adam; E Berry; P Elmer; D Gerbaudo; V Halyo; P Hebda; J Hegeman; A Hunt; P Jindal; D Lopes Pegna; P Lujan; D Marlow; T Medvedeva; M Mooney; J Olsen; P Piroué; X Quan; A Raval; B Safdi; H Saka; D Stickland; C Tully; J S Werner; A Zuranski; J G Acosta; E Brownson; X T Huang; A Lopez; H Mendez; S Oliveros; J E Ramirez Vargas; A Zatserklyaniy; E Alagoz; V E Barnes; D Benedetti; G Bolla; D Bortoletto; M De Mattia; A Everett; Z Hu; M Jones; O Koybasi; M Kress; A T Laasanen; N Leonardo; V Maroussov; P Merkel; D H Miller; N Neumeister; I Shipsey; D Silvers; A Svyatkovskiy; M Vidal Marono; H D Yoo; J Zablocki; Y Zheng; S Guragain; N Parashar; A Adair; C Boulahouache; K M Ecklund; F J M Geurts; B P Padley; R Redjimi; J Roberts; J Zabel; B Betchart; A Bodek; Y S Chung; R Covarelli; P de Barbaro; R Demina; Y Eshaq; A Garcia-Bellido; P Goldenzweig; J Han; A Harel; D C Miner; D Vishnevskiy; M Zielinski; A Bhatti; R Ciesielski; L Demortier; K Goulianos; G Lungu; S Malik; C Mesropian; S Arora; A Barker; J P Chou; C Contreras-Campana; E Contreras-Campana; D Duggan; D Ferencek; Y Gershtein; R Gray; E Halkiadakis; D Hidas; A Lath; S Panwalkar; M Park; R Patel; V Rekovic; J Robles; K Rose; S Salur; S Schnetzer; C Seitz; S Somalwar; R Stone; S Thomas; G Cerizza; M Hollingsworth; S Spanier; Z C Yang; A York; R Eusebi; W Flanagan; J Gilmore; T Kamon; V Khotilovich; R Montalvo; I Osipenkov; Y Pakhotin; A Perloff; J Roe; A Safonov; T Sakuma; S Sengupta; I Suarez; A Tatarinov; D Toback; N Akchurin; J Damgov; P R Dudero; C Jeong; K Kovitanggoon; S W Lee; T Libeiro; Y Roh; I Volobouev; E Appelt; A G Delannoy; C Florez; S Greene; A Gurrola; W Johns; C Johnston; P Kurt; C Maguire; A Melo; M Sharma; P Sheldon; B Snook; S Tuo; J Velkovska; M W Arenton; M Balazs; S Boutle; B Cox; B Francis; J Goodell; R Hirosky; A Ledovskoy; C Lin; C Neu; J Wood; R Yohay; S Gollapinni; R Harr; P E Karchin; C Kottachchi Kankanamge Don; P Lamichhane; A Sakharov; M Anderson; M Bachtis; D Belknap; L Borrello; D Carlsmith; M Cepeda; S Dasu; E Friis; L Gray; K S Grogg; M Grothe; R Hall-Wilton; M Herndon; A Hervé; P Klabbers; J Klukas; A Lanaro; C Lazaridis; J Leonard; R Loveless; A Mohapatra; I Ojalvo; F Palmonari; G A Pierro; I Ross; A Savin; W H Smith; J Swanson
Journal:  Phys Rev Lett       Date:  2012-11-26       Impact factor: 9.161

8.  J/psi production in Indium-Indium collisions at 158 GeV/nucleon.

Authors:  R Arnaldi; K Banicz; J Castor; B Chaurand; C Cicalò; A Colla; P Cortese; S Damjanovic; A David; A de Falco; A Devaux; L Ducroux; H En'yo; J Fargeix; A Ferretti; M Floris; A Förster; P Force; N Guettet; A Guichard; H Gulkanian; J M Heuser; M Keil; L Kluberg; C Lourenço; J Lozano; F Manso; P Martins; A Masoni; A Neves; H Ohnishi; C Oppedisano; P Parracho; P Pillot; T Poghosyan; G Puddu; E Radermacher; P Ramalhete; P Rosinsky; E Scomparin; J Seixas; S Serci; R Shahoyan; P Sonderegger; H J Specht; R Tieulent; G Usai; R Veenhof; H K Wöhri
Journal:  Phys Rev Lett       Date:  2007-09-26       Impact factor: 9.161

9.  Measurement of J/ψ polarization in pp collisions at [Formula: see text].

Authors:  R Aaij; C Abellan Beteta; B Adeva; M Adinolfi; C Adrover; A Affolder; Z Ajaltouni; J Albrecht; F Alessio; M Alexander; S Ali; G Alkhazov; P Alvarez Cartelle; A A Alves; S Amato; S Amerio; Y Amhis; L Anderlini; J Anderson; R Andreassen; R B Appleby; O Aquines Gutierrez; F Archilli; A Artamonov; M Artuso; E Aslanides; G Auriemma; S Bachmann; J J Back; C Baesso; V Balagura; W Baldini; R J Barlow; C Barschel; S Barsuk; W Barter; Th Bauer; A Bay; J Beddow; F Bedeschi; I Bediaga; S Belogurov; K Belous; I Belyaev; E Ben-Haim; M Benayoun; G Bencivenni; S Benson; J Benton; A Berezhnoy; R Bernet; M-O Bettler; M van Beuzekom; A Bien; S Bifani; T Bird; A Bizzeti; P M Bjørnstad; T Blake; F Blanc; J Blouw; S Blusk; V Bocci; A Bondar; N Bondar; W Bonivento; S Borghi; A Borgia; T J V Bowcock; E Bowen; C Bozzi; T Brambach; J van den Brand; J Bressieux; D Brett; M Britsch; T Britton; N H Brook; H Brown; I Burducea; A Bursche; G Busetto; J Buytaert; S Cadeddu; O Callot; M Calvi; M Calvo Gomez; A Camboni; P Campana; D Campora Perez; A Carbone; G Carboni; R Cardinale; A Cardini; H Carranza-Mejia; L Carson; K Carvalho Akiba; G Casse; L Castillo Garcia; M Cattaneo; Ch Cauet; M Charles; Ph Charpentier; P Chen; N Chiapolini; M Chrzaszcz; K Ciba; X Cid Vidal; G Ciezarek; P E L Clarke; M Clemencic; H V Cliff; J Closier; C Coca; V Coco; J Cogan; E Cogneras; P Collins; A Comerma-Montells; A Contu; A Cook; M Coombes; S Coquereau; G Corti; B Couturier; G A Cowan; D C Craik; S Cunliffe; R Currie; C D'Ambrosio; P David; P N Y David; A Davis; I De Bonis; K De Bruyn; S De Capua; M De Cian; J M De Miranda; L De Paula; W De Silva; P De Simone; D Decamp; M Deckenhoff; L Del Buono; D Derkach; O Deschamps; F Dettori; A Di Canto; H Dijkstra; M Dogaru; S Donleavy; F Dordei; A Dosil Suárez; D Dossett; A Dovbnya; F Dupertuis; R Dzhelyadin; A Dziurda; A Dzyuba; S Easo; U Egede; V Egorychev; S Eidelman; D van Eijk; S Eisenhardt; U Eitschberger; R Ekelhof; L Eklund; I El Rifai; Ch Elsasser; D Elsby; A Falabella; C Färber; G Fardell; C Farinelli; S Farry; V Fave; D Ferguson; V Fernandez Albor; F Ferreira Rodrigues; M Ferro-Luzzi; S Filippov; M Fiore; C Fitzpatrick; M Fontana; F Fontanelli; R Forty; O Francisco; M Frank; C Frei; M Frosini; S Furcas; E Furfaro; A Gallas Torreira; D Galli; M Gandelman; P Gandini; Y Gao; J Garofoli; P Garosi; J Garra Tico; L Garrido; C Gaspar; R Gauld; E Gersabeck; M Gersabeck; T Gershon; Ph Ghez; V Gibson; V V Gligorov; C Göbel; D Golubkov; A Golutvin; A Gomes; H Gordon; C Gotti; M Grabalosa Gándara; R Graciani Diaz; L A Granado Cardoso; E Graugés; G Graziani; A Grecu; E Greening; S Gregson; O Grünberg; B Gui; E Gushchin; Yu Guz; T Gys; C Hadjivasiliou; G Haefeli; C Haen; S C Haines; S Hall; T Hampson; S Hansmann-Menzemer; N Harnew; S T Harnew; J Harrison; T Hartmann; J He; V Heijne; K Hennessy; P Henrard; J A Hernando Morata; E van Herwijnen; A Hicheur; E Hicks; D Hill; M Hoballah; C Hombach; P Hopchev; W Hulsbergen; P Hunt; T Huse; N Hussain; D Hutchcroft; D Hynds; V Iakovenko; M Idzik; P Ilten; R Jacobsson; A Jaeger; E Jans; P Jaton; F Jing; M John; D Johnson; C R Jones; C Joram; B Jost; M Kaballo; S Kandybei; M Karacson; T M Karbach; I R Kenyon; U Kerzel; T Ketel; A Keune; B Khanji; O Kochebina; I Komarov; R F Koopman; P Koppenburg; M Korolev; A Kozlinskiy; L Kravchuk; K Kreplin; M Kreps; G Krocker; P Krokovny; F Kruse; M Kucharczyk; V Kudryavtsev; T Kvaratskheliya; V N La Thi; D Lacarrere; G Lafferty; A Lai; D Lambert; R W Lambert; E Lanciotti; G Lanfranchi; C Langenbruch; T Latham; C Lazzeroni; R Le Gac; J van Leerdam; J-P Lees; R Lefèvre; A Leflat; J Lefrançois; S Leo; O Leroy; T Lesiak; B Leverington; Y Li; L Li Gioi; M Liles; R Lindner; C Linn; B Liu; G Liu; S Lohn; I Longstaff; J H Lopes; E Lopez Asamar; N Lopez-March; H Lu; D Lucchesi; J Luisier; H Luo; F Machefert; I V Machikhiliyan; F Maciuc; O Maev; S Malde; G Manca; G Mancinelli; U Marconi; R Märki; J Marks; G Martellotti; A Martens; A Martín Sánchez; M Martinelli; D Martinez Santos; D Martins Tostes; A Martynov; A Massafferri; R Matev; Z Mathe; C Matteuzzi; E Maurice; A Mazurov; J McCarthy; A McNab; R McNulty; B Meadows; F Meier; M Meissner; M Merk; D A Milanes; M-N Minard; J Molina Rodriguez; S Monteil; D Moran; P Morawski; M J Morello; R Mountain; I Mous; F Muheim; K Müller; R Muresan; B Muryn; B Muster; P Naik; T Nakada; R Nandakumar; I Nasteva; M Needham; N Neufeld; A D Nguyen; T D Nguyen; C Nguyen-Mau; M Nicol; V Niess; R Niet; N Nikitin; T Nikodem; A Nomerotski; A Novoselov; A Oblakowska-Mucha; V Obraztsov; S Oggero; S Ogilvy; O Okhrimenko; R Oldeman; M Orlandea; J M Otalora Goicochea; P Owen; A Oyanguren; B K Pal; A Palano; M Palutan; J Panman; A Papanestis; M Pappagallo; C Parkes; C J Parkinson; G Passaleva; G D Patel; M Patel; G N Patrick; C Patrignani; C Pavel-Nicorescu; A Pazos Alvarez; A Pellegrino; G Penso; M Pepe Altarelli; S Perazzini; D L Perego; E Perez Trigo; A Pérez-Calero Yzquierdo; P Perret; M Perrin-Terrin; K Petridis; A Petrolini; A Phan; E Picatoste Olloqui; B Pietrzyk; T Pilař; D Pinci; S Playfer; M Plo Casasus; F Polci; G Polok; A Poluektov; E Polycarpo; D Popov; B Popovici; C Potterat; A Powell; J Prisciandaro; A Pritchard; C Prouve; V Pugatch; A Puig Navarro; G Punzi; W Qian; J H Rademacker; B Rakotomiaramanana; M S Rangel; I Raniuk; N Rauschmayr; G Raven; S Redford; M M Reid; A C Dos Reis; S Ricciardi; A Richards; K Rinnert; V Rives Molina; D A Roa Romero; P Robbe; E Rodrigues; P Rodriguez Perez; S Roiser; V Romanovsky; A Romero Vidal; J Rouvinet; T Ruf; F Ruffini; H Ruiz; P Ruiz Valls; G Sabatino; J J Saborido Silva; N Sagidova; P Sail; B Saitta; C Salzmann; B Sanmartin Sedes; M Sannino; R Santacesaria; C Santamarina Rios; E Santovetti; M Sapunov; A Sarti; C Satriano; A Satta; M Savrie; D Savrina; P Schaack; M Schiller; H Schindler; M Schlupp; M Schmelling; B Schmidt; O Schneider; A Schopper; M-H Schune; R Schwemmer; B Sciascia; A Sciubba; M Seco; A Semennikov; K Senderowska; I Sepp; N Serra; J Serrano; P Seyfert; M Shapkin; I Shapoval; P Shatalov; Y Shcheglov; T Shears; L Shekhtman; O Shevchenko; V Shevchenko; A Shires; R Silva Coutinho; T Skwarnicki; N A Smith; E Smith; M Smith; M D Sokoloff; F J P Soler; F Soomro; D Souza; B Souza De Paula; B Spaan; A Sparkes; P Spradlin; F Stagni; S Stahl; O Steinkamp; S Stoica; S Stone; B Storaci; M Straticiuc; U Straumann; V K Subbiah; S Swientek; V Syropoulos; M Szczekowski; P Szczypka; T Szumlak; S T'Jampens; M Teklishyn; E Teodorescu; F Teubert; C Thomas; E Thomas; J van Tilburg; V Tisserand; M Tobin; S Tolk; D Tonelli; S Topp-Joergensen; N Torr; E Tournefier; S Tourneur; M T Tran; M Tresch; A Tsaregorodtsev; P Tsopelas; N Tuning; M Ubeda Garcia; A Ukleja; D Urner; U Uwer; V Vagnoni; G Valenti; R Vazquez Gomez; P Vazquez Regueiro; S Vecchi; J J Velthuis; M Veltri; G Veneziano; M Vesterinen; B Viaud; D Vieira; X Vilasis-Cardona; A Vollhardt; D Volyanskyy; D Voong; A Vorobyev; V Vorobyev; C Voß; H Voss; R Waldi; R Wallace; S Wandernoth; J Wang; D R Ward; N K Watson; A D Webber; D Websdale; M Whitehead; J Wicht; J Wiechczynski; D Wiedner; L Wiggers; G Wilkinson; M P Williams; M Williams; F F Wilson; J Wishahi; M Witek; S A Wotton; S Wright; S Wu; K Wyllie; Y Xie; Z Xing; Z Yang; R Young; X Yuan; O Yushchenko; M Zangoli; M Zavertyaev; F Zhang; L Zhang; W C Zhang; Y Zhang; A Zhelezov; A Zhokhov; L Zhong; A Zvyagin
Journal:  Eur Phys J C Part Fields       Date:  2013-11-09       Impact factor: 4.590

  9 in total
  1 in total

1.  Measurement of quarkonium production in proton-lead and proton-proton collisions at 5.02 TeV with the ATLAS detector.

Authors:  M Aaboud; G Aad; B Abbott; J Abdallah; O Abdinov; B Abeloos; S H Abidi; O S AbouZeid; N L Abraham; H Abramowicz; H Abreu; R Abreu; Y Abulaiti; B S Acharya; S Adachi; L Adamczyk; J Adelman; M Adersberger; T Adye; A A Affolder; T Agatonovic-Jovin; C Agheorghiesei; J A Aguilar-Saavedra; S P Ahlen; F Ahmadov; G Aielli; S Akatsuka; H Akerstedt; T P A Åkesson; A V Akimov; G L Alberghi; J Albert; M J Alconada Verzini; M Aleksa; I N Aleksandrov; C Alexa; G Alexander; T Alexopoulos; M Alhroob; B Ali; M Aliev; G Alimonti; J Alison; S P Alkire; B M M Allbrooke; B W Allen; P P Allport; A Aloisio; A Alonso; F Alonso; C Alpigiani; A A Alshehri; M I Alstaty; B Alvarez Gonzalez; D Álvarez Piqueras; M G Alviggi; B T Amadio; Y Amaral Coutinho; C Amelung; D Amidei; S P Amor Dos Santos; A Amorim; S Amoroso; G Amundsen; C Anastopoulos; L S Ancu; N Andari; T Andeen; C F Anders; J K Anders; K J Anderson; A Andreazza; V Andrei; S Angelidakis; I Angelozzi; A Angerami; A V Anisenkov; N Anjos; A Annovi; C Antel; M Antonelli; A Antonov; D J Antrim; F Anulli; M Aoki; L Aperio Bella; G Arabidze; Y Arai; J P Araque; V Araujo Ferraz; A T H Arce; R E Ardell; F A Arduh; J-F Arguin; S Argyropoulos; M Arik; A J Armbruster; L J Armitage; O Arnaez; H Arnold; M Arratia; O Arslan; A Artamonov; G Artoni; S Artz; S Asai; N Asbah; A Ashkenazi; L Asquith; K Assamagan; R Astalos; M Atkinson; N B Atlay; K Augsten; G Avolio; B Axen; M K Ayoub; G Azuelos; A E Baas; M J Baca; H Bachacou; K Bachas; M Backes; M Backhaus; P Bagnaia; H Bahrasemani; J T Baines; M Bajic; O K Baker; E M Baldin; P Balek; F Balli; W K Balunas; E Banas; Sw Banerjee; A A E Bannoura; L Barak; E L Barberio; D Barberis; M Barbero; T Barillari; M-S Barisits; J T Barkeloo; T Barklow; N Barlow; S L Barnes; B M Barnett; R M Barnett; Z Barnovska-Blenessy; A Baroncelli; G Barone; A J Barr; L Barranco Navarro; F Barreiro; J Barreiro Guimarães da Costa; R Bartoldus; A E Barton; P Bartos; A Basalaev; A Bassalat; R L Bates; S J Batista; J R Batley; M Battaglia; M Bauce; F Bauer; H S Bawa; J B Beacham; M D Beattie; T Beau; P H Beauchemin; P Bechtle; H P Beck; K Becker; M Becker; M Beckingham; C Becot; A J Beddall; A Beddall; V A Bednyakov; M Bedognetti; C P Bee; T A Beermann; M Begalli; M Begel; J K Behr; A S Bell; G Bella; L Bellagamba; A Bellerive; M Bellomo; K Belotskiy; O Beltramello; N L Belyaev; O Benary; D Benchekroun; M Bender; K Bendtz; N Benekos; Y Benhammou; E Benhar Noccioli; J Benitez; D P Benjamin; M Benoit; J R Bensinger; S Bentvelsen; L Beresford; M Beretta; D Berge; E Bergeaas Kuutmann; N Berger; J Beringer; S Berlendis; N R Bernard; G Bernardi; C Bernius; F U Bernlochner; T Berry; P Berta; C Bertella; G Bertoli; F Bertolucci; I A Bertram; C Bertsche; D Bertsche; G J Besjes; O Bessidskaia Bylund; M Bessner; N Besson; C Betancourt; A Bethani; S Bethke; A J Bevan; R M Bianchi; O Biebel; D Biedermann; R Bielski; N V Biesuz; M Biglietti; J Bilbao De Mendizabal; T R V Billoud; H Bilokon; M Bindi; A Bingul; C Bini; S Biondi; T Bisanz; C Bittrich; D M Bjergaard; C W Black; J E Black; K M Black; D Blackburn; R E Blair; T Blazek; I Bloch; C Blocker; A Blue; W Blum; U Blumenschein; S Blunier; G J Bobbink; V S Bobrovnikov; S S Bocchetta; A Bocci; C Bock; M Boehler; D Boerner; D Bogavac; A G Bogdanchikov; C Bohm; V Boisvert; P Bokan; T Bold; A S Boldyrev; A E Bolz; M Bomben; M Bona; M Boonekamp; A Borisov; G Borissov; J Bortfeldt; D Bortoletto; V Bortolotto; D Boscherini; M Bosman; J D Bossio Sola; J Boudreau; J Bouffard; E V Bouhova-Thacker; D Boumediene; C Bourdarios; S K Boutle; A Boveia; J Boyd; I R Boyko; J Bracinik; A Brandt; G Brandt; O Brandt; U Bratzler; B Brau; J E Brau; W D Breaden Madden; K Brendlinger; A J Brennan; L Brenner; R Brenner; S Bressler; D L Briglin; T M Bristow; D Britton; D Britzger; F M Brochu; I Brock; R Brock; G Brooijmans; T Brooks; W K Brooks; J Brosamer; E Brost; J H Broughton; P A Bruckman de Renstrom; D Bruncko; A Bruni; G Bruni; L S Bruni; B H Brunt; M Bruschi; N Bruscino; P Bryant; L Bryngemark; T Buanes; Q Buat; P Buchholz; A G Buckley; I A Budagov; F Buehrer; M K Bugge; O Bulekov; D Bullock; H Burckhart; S Burdin; C D Burgard; A M Burger; B Burghgrave; K Burka; S Burke; I Burmeister; J T P Burr; E Busato; D Büscher; V Büscher; P Bussey; J M Butler; C M Buttar; J M Butterworth; P Butti; W Buttinger; A Buzatu; A R Buzykaev; S Cabrera Urbán; D Caforio; V M Cairo; O Cakir; N Calace; P Calafiura; A Calandri; G Calderini; P Calfayan; G Callea; L P Caloba; S Calvente Lopez; D Calvet; S Calvet; T P Calvet; R Camacho Toro; S Camarda; P Camarri; D Cameron; R Caminal Armadans; C Camincher; S Campana; M Campanelli; A Camplani; A Campoverde; V Canale; M Cano Bret; J Cantero; T Cao; M D M Capeans Garrido; I Caprini; M Caprini; M Capua; R M Carbone; R Cardarelli; F Cardillo; I Carli; T Carli; G Carlino; B T Carlson; L Carminati; R M D Carney; S Caron; E Carquin; S Carrá; G D Carrillo-Montoya; J Carvalho; D Casadei; M P Casado; M Casolino; D W Casper; R Castelijn; V Castillo Gimenez; N F Castro; A Catinaccio; J R Catmore; A Cattai; J Caudron; V Cavaliere; E Cavallaro; D Cavalli; M Cavalli-Sforza; V Cavasinni; E Celebi; F Ceradini; L Cerda Alberich; A S Cerqueira; A Cerri; L Cerrito; F Cerutti; A Cervelli; S A Cetin; A Chafaq; D Chakraborty; S K Chan; W S Chan; Y L Chan; P Chang; J D Chapman; D G Charlton; C C Chau; C A Chavez Barajas; S Che; S Cheatham; A Chegwidden; S Chekanov; S V Chekulaev; G A Chelkov; M A Chelstowska; C Chen; H Chen; S Chen; S Chen; X Chen; Y Chen; H C Cheng; H J Cheng; Y Cheng; A Cheplakov; E Cheremushkina; R Cherkaoui El Moursli; V Chernyatin; E Cheu; L Chevalier; V Chiarella; G Chiarelli; G Chiodini; A S Chisholm; A Chitan; Y H Chiu; M V Chizhov; K Choi; A R Chomont; S Chouridou; V Christodoulou; D Chromek-Burckhart; M C Chu; J Chudoba; A J Chuinard; J J Chwastowski; L Chytka; A K Ciftci; D Cinca; V Cindro; I A Cioara; C Ciocca; A Ciocio; F Cirotto; Z H Citron; M Citterio; M Ciubancan; A Clark; B L Clark; M R Clark; P J Clark; R N Clarke; C Clement; Y Coadou; M Cobal; A Coccaro; J Cochran; L Colasurdo; B Cole; A P Colijn; J Collot; T Colombo; P Conde Muiño; E Coniavitis; S H Connell; I A Connelly; S Constantinescu; G Conti; F Conventi; M Cooke; A M Cooper-Sarkar; F Cormier; K J R Cormier; M Corradi; F Corriveau; A Cortes-Gonzalez; G Cortiana; G Costa; M J Costa; D Costanzo; G Cottin; G Cowan; B E Cox; K Cranmer; S J Crawley; R A Creager; G Cree; S Crépé-Renaudin; F Crescioli; W A Cribbs; M Cristinziani; V Croft; G Crosetti; A Cueto; T Cuhadar Donszelmann; A R Cukierman; J Cummings; M Curatolo; J Cúth; H Czirr; P Czodrowski; G D'amen; S D'Auria; M D'Onofrio; M J Da Cunha Sargedas De Sousa; C Da Via; W Dabrowski; T Dado; T Dai; O Dale; F Dallaire; C Dallapiccola; M Dam; J R Dandoy; N P Dang; A C Daniells; N S Dann; M Danninger; M Dano Hoffmann; V Dao; G Darbo; S Darmora; J Dassoulas; A Dattagupta; T Daubney; W Davey; C David; T Davidek; M Davies; P Davison; E Dawe; I Dawson; K De; R de Asmundis; A De Benedetti; S De Castro; S De Cecco; 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M Dobre; C Doglioni; J Dolejsi; Z Dolezal; M Donadelli; S Donati; P Dondero; J Donini; J Dopke; A Doria; M T Dova; A T Doyle; E Drechsler; M Dris; Y Du; J Duarte-Campderros; E Duchovni; G Duckeck; A Ducourthial; O A Ducu; D Duda; A Dudarev; A Chr Dudder; E M Duffield; L Duflot; M Dührssen; M Dumancic; A E Dumitriu; A K Duncan; M Dunford; H Duran Yildiz; M Düren; A Durglishvili; D Duschinger; B Dutta; M Dyndal; C Eckardt; K M Ecker; R C Edgar; T Eifert; G Eigen; K Einsweiler; T Ekelof; M El Kacimi; R El Kosseifi; V Ellajosyula; M Ellert; S Elles; F Ellinghaus; A A Elliot; N Ellis; J Elmsheuser; M Elsing; D Emeliyanov; Y Enari; O C Endner; J S Ennis; J Erdmann; A Ereditato; G Ernis; M Ernst; S Errede; E Ertel; M Escalier; C Escobar; B Esposito; O Estrada Pastor; A I Etienvre; E Etzion; H Evans; A Ezhilov; M Ezzi; F Fabbri; L Fabbri; G Facini; R M Fakhrutdinov; S Falciano; R J Falla; J Faltova; Y Fang; M Fanti; A Farbin; A Farilla; C Farina; E M Farina; T Farooque; S Farrell; S M Farrington; P Farthouat; F Fassi; P Fassnacht; D Fassouliotis; M Faucci Giannelli; A Favareto; W J Fawcett; L Fayard; O L Fedin; W Fedorko; S Feigl; L Feligioni; C Feng; E J Feng; H Feng; M J Fenton; A B Fenyuk; L Feremenga; P Fernandez Martinez; S Fernandez Perez; J Ferrando; A Ferrari; P Ferrari; R Ferrari; D E Ferreira de Lima; A Ferrer; D Ferrere; C Ferretti; F Fiedler; A Filipčič; M Filipuzzi; F Filthaut; M Fincke-Keeler; K D Finelli; M C N Fiolhais; L Fiorini; A Fischer; C Fischer; J Fischer; W C Fisher; N Flaschel; I Fleck; P Fleischmann; R R M Fletcher; T Flick; B M Flierl; L R Flores Castillo; M J Flowerdew; G T Forcolin; A Formica; F A Förster; A Forti; A G Foster; D Fournier; H Fox; S Fracchia; P Francavilla; M Franchini; S Franchino; D Francis; L Franconi; M Franklin; M Frate; M Fraternali; D Freeborn; S M Fressard-Batraneanu; B Freund; D Froidevaux; J A Frost; C Fukunaga; T Fusayasu; J Fuster; C Gabaldon; O Gabizon; A Gabrielli; A Gabrielli; G P Gach; S Gadatsch; S Gadomski; G Gagliardi; L G Gagnon; C Galea; B Galhardo; E J Gallas; B J Gallop; P Gallus; G Galster; K K Gan; S Ganguly; J Gao; Y Gao; Y S Gao; F M Garay Walls; C García; J E García Navarro; M Garcia-Sciveres; R W Gardner; N Garelli; V Garonne; A Gascon Bravo; K Gasnikova; C Gatti; A Gaudiello; G Gaudio; I L Gavrilenko; C Gay; G Gaycken; E N Gazis; C N P Gee; J Geisen; M Geisen; M P Geisler; K Gellerstedt; C Gemme; M H Genest; C Geng; S Gentile; C Gentsos; S George; D Gerbaudo; A Gershon; S Ghasemi; M Ghneimat; B Giacobbe; S Giagu; P Giannetti; S M Gibson; M Gignac; M Gilchriese; D Gillberg; G Gilles; D M Gingrich; N Giokaris; M P Giordani; F M Giorgi; P F Giraud; P Giromini; D Giugni; F Giuli; C Giuliani; M Giulini; B K Gjelsten; S Gkaitatzis; I Gkialas; E L Gkougkousis; L K Gladilin; C Glasman; J Glatzer; P C F Glaysher; A Glazov; M Goblirsch-Kolb; J Godlewski; S Goldfarb; T Golling; D Golubkov; A Gomes; R Gonçalo; R Goncalves Gama; J Goncalves Pinto Firmino Da Costa; G Gonella; L Gonella; A Gongadze; S González de la Hoz; S Gonzalez-Sevilla; L Goossens; P A Gorbounov; H A Gordon; I Gorelov; B Gorini; E Gorini; A Gorišek; A T Goshaw; C Gössling; M I Gostkin; C R Goudet; D Goujdami; A G Goussiou; N Govender; E Gozani; L Graber; I Grabowska-Bold; P O J Gradin; J Gramling; E Gramstad; S Grancagnolo; V Gratchev; P M Gravila; C Gray; H M Gray; Z D Greenwood; C Grefe; K Gregersen; I M Gregor; P Grenier; K Grevtsov; J Griffiths; A A Grillo; K Grimm; S Grinstein; Ph Gris; J-F Grivaz; S Groh; E Gross; J Grosse-Knetter; G C Grossi; Z J Grout; A Grummer; L Guan; W Guan; J Guenther; F Guescini; D Guest; O Gueta; B Gui; E Guido; T Guillemin; S Guindon; U Gul; C Gumpert; J Guo; W Guo; Y Guo; R Gupta; S Gupta; G Gustavino; P Gutierrez; N G Gutierrez Ortiz; C Gutschow; C Guyot; M P Guzik; C Gwenlan; C B Gwilliam; A Haas; C Haber; H K Hadavand; N Haddad; A Hadef; S Hageböck; M Hagihara; H Hakobyan; M Haleem; J Haley; G Halladjian; G D Hallewell; K Hamacher; P Hamal; K Hamano; A Hamilton; G N Hamity; P G Hamnett; L Han; S Han; 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T R Holmes; M Homann; S Honda; T Honda; T M Hong; B H Hooberman; W H Hopkins; Y Horii; A J Horton; J-Y Hostachy; S Hou; A Hoummada; J Howarth; J Hoya; M Hrabovsky; I Hristova; J Hrivnac; T Hryn'ova; A Hrynevich; P J Hsu; S-C Hsu; Q Hu; S Hu; Y Huang; Z Hubacek; F Hubaut; F Huegging; T B Huffman; E W Hughes; G Hughes; M Huhtinen; P Huo; N Huseynov; J Huston; J Huth; G Iacobucci; G Iakovidis; I Ibragimov; L Iconomidou-Fayard; Z Idrissi; P Iengo; O Igonkina; T Iizawa; Y Ikegami; M Ikeno; Y Ilchenko; D Iliadis; N Ilic; G Introzzi; P Ioannou; M Iodice; K Iordanidou; V Ippolito; M F Isacson; N Ishijima; M Ishino; M Ishitsuka; C Issever; S Istin; F Ito; J M Iturbe Ponce; R Iuppa; H Iwasaki; J M Izen; V Izzo; S Jabbar; P Jackson; R M Jacobs; V Jain; K B Jakobi; K Jakobs; S Jakobsen; T Jakoubek; D O Jamin; D K Jana; R Jansky; J Janssen; M Janus; P A Janus; G Jarlskog; N Javadov; T Javůrek; M Javurkova; F Jeanneau; L Jeanty; J Jejelava; A Jelinskas; P Jenni; C Jeske; S Jézéquel; H Ji; J Jia; H Jiang; Y Jiang; Z Jiang; S Jiggins; J Jimenez Pena; S Jin; A Jinaru; O Jinnouchi; H Jivan; P Johansson; K A Johns; C A Johnson; W J Johnson; K Jon-And; R W L Jones; S D Jones; S Jones; T J Jones; J Jongmanns; P M Jorge; J Jovicevic; X Ju; A Juste Rozas; M K Köhler; A Kaczmarska; M Kado; H Kagan; M Kagan; S J Kahn; T Kaji; E Kajomovitz; C W Kalderon; A Kaluza; S Kama; A Kamenshchikov; N Kanaya; L Kanjir; V A Kantserov; J Kanzaki; B Kaplan; L S Kaplan; D Kar; K Karakostas; N Karastathis; M J Kareem; E Karentzos; S N Karpov; Z M Karpova; K Karthik; V Kartvelishvili; A N Karyukhin; K Kasahara; L Kashif; R D Kass; A Kastanas; Y Kataoka; C Kato; A Katre; J Katzy; K Kawade; K Kawagoe; T Kawamoto; G Kawamura; E F Kay; V F Kazanin; R Keeler; R Kehoe; J S Keller; J J Kempster; H Keoshkerian; O Kepka; B P Kerševan; S Kersten; R A Keyes; M Khader; F Khalil-Zada; A Khanov; A G Kharlamov; T Kharlamova; A Khodinov; T J Khoo; V Khovanskiy; E Khramov; J Khubua; S Kido; C R Kilby; H Y Kim; S H Kim; Y K Kim; N Kimura; O M Kind; B T King; D Kirchmeier; J Kirk; A E Kiryunin; T Kishimoto; D Kisielewska; K Kiuchi; O Kivernyk; E Kladiva; T Klapdor-Kleingrothaus; M H Klein; M Klein; U Klein; K Kleinknecht; P Klimek; A Klimentov; R Klingenberg; T Klingl; T Klioutchnikova; E-E Kluge; P Kluit; S Kluth; J Knapik; E Kneringer; E B F G Knoops; A Knue; A Kobayashi; D Kobayashi; T Kobayashi; M Kobel; M Kocian; P Kodys; T Koffas; E Koffeman; N M Köhler; T Koi; M Kolb; I Koletsou; A A Komar; Y Komori; T Kondo; N Kondrashova; K Köneke; A C König; T Kono; R Konoplich; N Konstantinidis; R Kopeliansky; S Koperny; A K Kopp; K Korcyl; K Kordas; A Korn; A A Korol; I Korolkov; E V Korolkova; O Kortner; S Kortner; T Kosek; V V Kostyukhin; A Kotwal; A Koulouris; A Kourkoumeli-Charalampidi; C Kourkoumelis; E Kourlitis; V Kouskoura; A B Kowalewska; R Kowalewski; T Z Kowalski; C Kozakai; W Kozanecki; A S Kozhin; V A Kramarenko; G Kramberger; D Krasnopevtsev; M W Krasny; A Krasznahorkay; D Krauss; J A Kremer; J Kretzschmar; K Kreutzfeldt; P Krieger; K Krizka; K Kroeninger; H Kroha; J Kroll; J Kroll; J Kroseberg; J Krstic; U Kruchonak; H Krüger; N Krumnack; M C Kruse; T Kubota; H Kucuk; S Kuday; J T Kuechler; S Kuehn; A Kugel; F Kuger; T Kuhl; V Kukhtin; R Kukla; Y Kulchitsky; S Kuleshov; Y P Kulinich; M Kuna; T Kunigo; A Kupco; O Kuprash; H Kurashige; L L Kurchaninov; Y A Kurochkin; M G Kurth; V Kus; E S Kuwertz; M Kuze; J Kvita; T Kwan; D Kyriazopoulos; A La Rosa; J L La Rosa Navarro; L La Rotonda; C Lacasta; F Lacava; J Lacey; H Lacker; D Lacour; E Ladygin; R Lafaye; B Laforge; T Lagouri; S Lai; S Lammers; W Lampl; E Lançon; U Landgraf; M P J Landon; M C Lanfermann; V S Lang; J C Lange; A J Lankford; F Lanni; K Lantzsch; A Lanza; A Lapertosa; S Laplace; J F Laporte; T Lari; F Lasagni Manghi; M Lassnig; P Laurelli; W Lavrijsen; A T Law; P Laycock; T Lazovich; M Lazzaroni; B Le; O Le Dortz; E Le Guirriec; E P Le Quilleuc; M LeBlanc; T LeCompte; F Ledroit-Guillon; C A Lee; G R Lee; S C Lee; L Lee; B Lefebvre; G Lefebvre; M Lefebvre; F Legger; C Leggett; A Lehan; G Lehmann Miotto; X Lei; W A Leight; M A L Leite; R Leitner; D Lellouch; B Lemmer; K J C Leney; T Lenz; B Lenzi; R Leone; S Leone; C Leonidopoulos; G Lerner; C Leroy; A A J Lesage; C G Lester; M Levchenko; J Levêque; D Levin; L J Levinson; M Levy; D Lewis; B Li; C-Q Li; H Li; L Li; Q Li; S Li; X Li; Y Li; Z Liang; B Liberti; A Liblong; K Lie; J Liebal; W Liebig; A Limosani; S C Lin; T H Lin; B E Lindquist; A E Lionti; E Lipeles; A Lipniacka; M Lisovyi; T M Liss; A Lister; A M Litke; B Liu; H Liu; H Liu; J K K Liu; J Liu; J B Liu; K Liu; L Liu; M Liu; Y L Liu; Y Liu; M Livan; A Lleres; J Llorente Merino; S L Lloyd; C Y Lo; F Lo Sterzo; E M Lobodzinska; P Loch; F K Loebinger; K M Loew; A Loginov; T Lohse; K Lohwasser; M Lokajicek; B A Long; J D Long; R E Long; L Longo; K A Looper; J A Lopez; D Lopez Mateos; I Lopez Paz; A Lopez Solis; J Lorenz; N Lorenzo Martinez; M Losada; P J Lösel; X Lou; A Lounis; J Love; P A Love; H Lu; N Lu; Y J Lu; H J Lubatti; 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P Teixeira-Dias; D Temple; H Ten Kate; P K Teng; J J Teoh; F Tepel; S Terada; K Terashi; J Terron; S Terzo; M Testa; R J Teuscher; T Theveneaux-Pelzer; J P Thomas; J Thomas-Wilsker; P D Thompson; A S Thompson; L A Thomsen; E Thomson; M J Tibbetts; R E Ticse Torres; V O Tikhomirov; Yu A Tikhonov; S Timoshenko; P Tipton; S Tisserant; K Todome; S Todorova-Nova; J Tojo; S Tokár; K Tokushuku; E Tolley; L Tomlinson; M Tomoto; L Tompkins; K Toms; B Tong; P Tornambe; E Torrence; H Torres; E Torró Pastor; J Toth; F Touchard; D R Tovey; C J Treado; T Trefzger; F Tresoldi; A Tricoli; I M Trigger; S Trincaz-Duvoid; M F Tripiana; W Trischuk; B Trocmé; A Trofymov; C Troncon; M Trottier-McDonald; M Trovatelli; L Truong; M Trzebinski; A Trzupek; K W Tsang; J C-L Tseng; P V Tsiareshka; G Tsipolitis; N Tsirintanis; S Tsiskaridze; V Tsiskaridze; E G Tskhadadze; K M Tsui; I I Tsukerman; V Tsulaia; S Tsuno; D Tsybychev; Y Tu; A Tudorache; V Tudorache; T T Tulbure; A N Tuna; S A Tupputi; S Turchikhin; D Turgeman; I Turk Cakir; R Turra; P M Tuts; G Ucchielli; I Ueda; M Ughetto; F Ukegawa; G Unal; A Undrus; G Unel; F C Ungaro; Y Unno; C Unverdorben; J Urban; P Urquijo; P Urrejola; G Usai; J Usui; L Vacavant; V Vacek; B Vachon; C Valderanis; E Valdes Santurio; S Valentinetti; A Valero; L Valéry; S Valkar; A Vallier; J A Valls Ferrer; W Van Den Wollenberg; H van der Graaf; P van Gemmeren; J Van Nieuwkoop; I van Vulpen; M C van Woerden; M Vanadia; W Vandelli; A Vaniachine; P Vankov; G Vardanyan; R Vari; E W Varnes; C Varni; T Varol; D Varouchas; A Vartapetian; K E Varvell; J G Vasquez; G A Vasquez; F Vazeille; T Vazquez Schroeder; J Veatch; V Veeraraghavan; L M Veloce; F Veloso; S Veneziano; A Ventura; M Venturi; N Venturi; A Venturini; V Vercesi; M Verducci; W Verkerke; J C Vermeulen; M C Vetterli; N Viaux Maira; O Viazlo; I Vichou; T Vickey; O E Vickey Boeriu; G H A Viehhauser; S Viel; L Vigani; M Villa; M Villaplana Perez; E Vilucchi; M G Vincter; V B Vinogradov; A Vishwakarma; C Vittori; I Vivarelli; S Vlachos; M Vlasak; M Vogel; P Vokac; G Volpi; H von der Schmitt; E von Toerne; V Vorobel; K Vorobev; M Vos; R Voss; J H Vossebeld; N Vranjes; M Vranjes Milosavljevic; V Vrba; M Vreeswijk; R Vuillermet; I Vukotic; P Wagner; W Wagner; J Wagner-Kuhr; H Wahlberg; S Wahrmund; J Wakabayashi; J Walder; R Walker; W Walkowiak; V Wallangen; C Wang; C Wang; F Wang; H Wang; H Wang; J Wang; J Wang; Q Wang; R Wang; S M Wang; T Wang; W Wang; W Wang; Z Wang; C Wanotayaroj; A Warburton; C P Ward; D R Wardrope; A Washbrook; P M Watkins; A T Watson; M F Watson; G Watts; S Watts; B M Waugh; A F Webb; S Webb; M S Weber; S W Weber; S A Weber; J S Webster; A R Weidberg; B Weinert; J Weingarten; C Weiser; H Weits; P S Wells; T Wenaus; T Wengler; S Wenig; N Wermes; M D Werner; P Werner; M Wessels; K Whalen; N L Whallon; A M Wharton; A S White; A White; M J White; R White; D Whiteson; F J Wickens; W Wiedenmann; M Wielers; C Wiglesworth; L A M Wiik-Fuchs; A Wildauer; F Wilk; H G Wilkens; H H Williams; S Williams; C Willis; S Willocq; J A Wilson; I Wingerter-Seez; E Winkels; F Winklmeier; O J Winston; B T Winter; M Wittgen; M Wobisch; T M H Wolf; R Wolff; M W Wolter; H Wolters; V W S Wong; S D Worm; B K Wosiek; J Wotschack; K W Wozniak; M Wu; S L Wu; X Wu; Y Wu; T R Wyatt; B M Wynne; S Xella; Z Xi; L Xia; D Xu; L Xu; B Yabsley; S Yacoob; D Yamaguchi; Y Yamaguchi; A Yamamoto; S Yamamoto; T Yamanaka; K Yamauchi; Y Yamazaki; Z Yan; H Yang; H Yang; Y Yang; Z Yang; W-M Yao; Y C Yap; Y Yasu; E Yatsenko; K H Yau Wong; J Ye; S Ye; I Yeletskikh; E Yigitbasi; E Yildirim; K Yorita; K Yoshihara; C Young; C J S Young; D R Yu; J Yu; J Yu; S P Y Yuen; I Yusuff; B Zabinski; G Zacharis; R Zaidan; A M Zaitsev; N Zakharchuk; J Zalieckas; A Zaman; S Zambito; D Zanzi; C Zeitnitz; A Zemla; J C Zeng; Q Zeng; O Zenin; T Ženiš; D Zerwas; D Zhang; F Zhang; G Zhang; H Zhang; J Zhang; L Zhang; L Zhang; M Zhang; P Zhang; R Zhang; R Zhang; X Zhang; Y Zhang; Z Zhang; X Zhao; Y Zhao; Z Zhao; A Zhemchugov; B Zhou; C Zhou; L Zhou; M Zhou; M Zhou; N Zhou; C G Zhu; H Zhu; J Zhu; Y Zhu; X Zhuang; K Zhukov; A Zibell; D Zieminska; N I Zimine; C Zimmermann; S Zimmermann; Z Zinonos; M Zinser; M Ziolkowski; L Živković; G Zobernig; A Zoccoli; R Zou; M Zur Nedden; L Zwalinski
Journal:  Eur Phys J C Part Fields       Date:  2018-02-28       Impact factor: 4.590

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