| Literature DB >> 26650297 |
L Adamczyk1, J K Adkins2, G Agakishiev3, M M Aggarwal4, Z Ahammed5, I Alekseev6, J Alford7, A Aparin3, D Arkhipkin8, E C Aschenauer8, G S Averichev3, A Banerjee5, R Bellwied9, A Bhasin10, A K Bhati4, P Bhattarai11, J Bielcik12, J Bielcikova13, L C Bland8, I G Bordyuzhin6, J Bouchet7, A V Brandin14, I Bunzarov3, T P Burton8, J Butterworth15, H Caines16, M Calderón de la Barca Sánchez17, J M Campbell18, D Cebra17, M C Cervantes19, I Chakaberia8, P Chaloupka12, Z Chang19, S Chattopadhyay5, J H Chen20, X Chen21, J Cheng22, M Cherney23, W Christie8, G Contin24, H J Crawford25, S Das26, L C De Silva23, R R Debbe8, T G Dedovich3, J Deng27, A A Derevschikov28, B di Ruzza8, L Didenko8, C Dilks29, X Dong24, J L Drachenberg30, J E Draper17, C M Du21, L E Dunkelberger31, J C Dunlop8, L G Efimov3, J Engelage25, G Eppley15, R Esha31, O Evdokimov32, O Eyser8, R Fatemi2, S Fazio8, P Federic13, J Fedorisin3, Z Feng33, P Filip3, Y Fisyak8, C E Flores17, L Fulek1, C A Gagliardi19, D Garand34, F Geurts15, A Gibson30, M Girard35, L Greiner24, D Grosnick30, D S Gunarathne36, Y Guo37, S Gupta10, A Gupta10, W Guryn8, A Hamad7, A Hamed19, R Haque38, J W Harris16, L He34, S Heppelmann29, S Heppelmann29, A Hirsch34, G W Hoffmann11, D J Hofman32, S Horvat16, H Z Huang31, B Huang32, X Huang22, P Huck33, T J Humanic18, G Igo31, W W Jacobs39, H Jang40, K Jiang37, E G Judd25, S Kabana7, D Kalinkin6, K Kang22, K Kauder41, H W Ke8, D Keane7, A Kechechyan3, Z H Khan32, D P Kikola35, I Kisel42, A Kisiel35, D D Koetke30, T Kollegger42, L K Kosarzewski35, L Kotchenda14, A F Kraishan36, P Kravtsov14, K Krueger43, I Kulakov42, L Kumar4, R A Kycia44, M A C Lamont8, J M Landgraf8, K D Landry31, J Lauret8, A Lebedev8, R Lednicky3, J H Lee8, W Li20, Y Li22, C Li37, Z M Li33, X Li8, X Li8, M A Lisa18, F Liu33, T Ljubicic8, W J Llope41, M Lomnitz7, R S Longacre8, X Luo33, L Ma20, R Ma8, Y G Ma20, G L Ma20, N Magdy45, R Majka16, A Manion24, S Margetis7, C Markert11, H Masui24, H S Matis24, D McDonald9, K Meehan17, N G Minaev28, S Mioduszewski19, B Mohanty38, M M Mondal19, D A Morozov28, M K Mustafa24, B K Nandi46, Md Nasim31, T K Nayak5, G Nigmatkulov14, L V Nogach28, S Y Noh40, J Novak47, S B Nurushev28, G Odyniec24, A Ogawa8, K Oh48, V Okorokov14, D L Olvitt36, B S Page8, R Pak8, Y X Pan31, Y Pandit32, Y Panebratsev3, B Pawlik44, H Pei33, C Perkins25, A Peterson18, P Pile8, M Planinic49, J Pluta35, N Poljak49, K Poniatowska35, J Porter24, M Posik36, A M Poskanzer24, N K Pruthi4, J Putschke41, H Qiu24, A Quintero7, S Ramachandran2, S Raniwala50, R Raniwala50, R L Ray11, H G Ritter24, J B Roberts15, O V Rogachevskiy3, J L Romero17, A Roy5, L Ruan8, J Rusnak13, O Rusnakova12, N R Sahoo19, P K Sahu26, I Sakrejda24, S Salur24, J Sandweiss16, A Sarkar46, J Schambach11, R P Scharenberg34, A M Schmah24, W B Schmidke8, N Schmitz51, J Seger23, P Seyboth51, N Shah31, E Shahaliev3, P V Shanmuganathan7, M Shao37, B Sharma4, M K Sharma10, W Q Shen20, S S Shi33, Q Y Shou20, E P Sichtermann24, R Sikora1, M Simko13, M J Skoby39, D Smirnov8, N Smirnov16, L Song9, P Sorensen8, H M Spinka43, B Srivastava34, T D S Stanislaus30, M Stepanov34, R Stock42, M Strikhanov14, B Stringfellow34, M Sumbera13, B J Summa29, X Sun24, X M Sun33, Z Sun21, Y Sun37, B Surrow36, D N Svirida6, M A Szelezniak24, Z Tang37, A H Tang8, T Tarnowsky47, A N Tawfik45, J H Thomas24, A R Timmins9, D Tlusty13, M Tokarev3, S Trentalange31, R E Tribble19, P Tribedy5, S K Tripathy26, B A Trzeciak12, O D Tsai31, T Ullrich8, D G Underwood43, I Upsal18, G Van Buren8, G van Nieuwenhuizen8, M Vandenbroucke36, R Varma46, A N Vasiliev28, R Vertesi13, F Videbaek8, Y P Viyogi5, S Vokal3, S A Voloshin41, A Vossen39, F Wang34, Y Wang33, H Wang8, J S Wang21, Y Wang33, G Wang31, G Webb8, J C Webb8, L Wen31, G D Westfall47, H Wieman24, S W Wissink39, R Witt52, Y F Wu33, Z Xiao22, W Xie34, K Xin15, Y F Xu20, N Xu24, Z Xu8, Q H Xu27, H Xu21, Y Yang21, Y Yang21, C Yang37, S Yang37, Q Yang37, Z Ye32, P Yepes15, L Yi34, K Yip8, I-K Yoo48, N Yu33, H Zbroszczyk35, W Zha37, X P Zhang22, J B Zhang33, J Zhang21, Z Zhang20, S Zhang20, Y Zhang37, J L Zhang27, F Zhao31, J Zhao33, C Zhong20, L Zhou37, X Zhu22, Y Zoulkarneeva3, M Zyzak42.
Abstract
Collisions between prolate uranium nuclei are used to study how particle production and azimuthal anisotropies depend on initial geometry in heavy-ion collisions. We report the two- and four-particle cumulants, v_{2}{2} and v_{2}{4}, for charged hadrons from U+U collisions at sqrt[s_{NN}]=193 GeV and Au+Au collisions at sqrt[s_{NN}]=200 GeV. Nearly fully overlapping collisions are selected based on the energy deposited by spectators in zero degree calorimeters (ZDCs). Within this sample, the observed dependence of v_{2}{2} on multiplicity demonstrates that ZDC information combined with multiplicity can preferentially select different overlap configurations in U+U collisions. We also show that v_{2} vs multiplicity can be better described by models, such as gluon saturation or quark participant models, that eliminate the dependence of the multiplicity on the number of binary nucleon-nucleon collisions.Entities:
Year: 2015 PMID: 26650297 DOI: 10.1103/PhysRevLett.115.222301
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161