Literature DB >> 35831598

Nuclear moments of indium isotopes reveal abrupt change at magic number 82.

A R Vernon1,2,3, R F Garcia Ruiz4,5, T Miyagi6, C L Binnersley7, J Billowes7, M L Bissell7, J Bonnard8, T E Cocolios9, J Dobaczewski8,10, G J Farooq-Smith9, K T Flanagan7,11, G Georgiev12, W Gins9,13, R P de Groote9,13, R Heinke14,15, J D Holt6,16, J Hustings9, Á Koszorús9, D Leimbach15,17,18, K M Lynch14, G Neyens9,14, S R Stroberg19, S G Wilkins7,20, X F Yang9,21, D T Yordanov14,12.   

Abstract

In spite of the high-density and strongly correlated nature of the atomic nucleus, experimental and theoretical evidence suggests that around particular 'magic' numbers of nucleons, nuclear properties are governed by a single unpaired nucleon1,2. A microscopic understanding of the extent of this behaviour and its evolution in neutron-rich nuclei remains an open question in nuclear physics3-5. The indium isotopes are considered a textbook example of this phenomenon6, in which the constancy of their electromagnetic properties indicated that a single unpaired proton hole can provide the identity of a complex many-nucleon system6,7. Here we present precision laser spectroscopy measurements performed to investigate the validity of this simple single-particle picture. Observation of an abrupt change in the dipole moment at N = 82 indicates that, whereas the single-particle picture indeed dominates at neutron magic number N = 82 (refs. 2,8), it does not for previously studied isotopes. To investigate the microscopic origin of these observations, our work provides a combined effort with developments in two complementary nuclear many-body methods: ab initio valence-space in-medium similarity renormalization group and density functional theory (DFT). We find that the inclusion of time-symmetry-breaking mean fields is essential for a correct description of nuclear magnetic properties, which were previously poorly constrained. These experimental and theoretical findings are key to understanding how seemingly simple single-particle phenomena naturally emerge from complex interactions among protons and neutrons.
© 2022. The Author(s), under exclusive licence to Springer Nature Limited.

Entities:  

Year:  2022        PMID: 35831598     DOI: 10.1038/s41586-022-04818-7

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   69.504


  12 in total

1.  Superallowed Gamow-Teller decay of the doubly magic nucleus 100Sn.

Authors:  C B Hinke; M Böhmer; P Boutachkov; T Faestermann; H Geissel; J Gerl; R Gernhäuser; M Górska; A Gottardo; H Grawe; J L Grębosz; R Krücken; N Kurz; Z Liu; L Maier; F Nowacki; S Pietri; Zs Podolyák; K Sieja; K Steiger; K Straub; H Weick; H-J Wollersheim; P J Woods; N Al-Dahan; N Alkhomashi; A Ataç; A Blazhev; N F Braun; I T Čeliković; T Davinson; I Dillmann; C Domingo-Pardo; P C Doornenbal; G de France; G F Farrelly; F Farinon; N Goel; T C Habermann; R Hoischen; R Janik; M Karny; A Kaşkaş; I M Kojouharov; Th Kröll; Y Litvinov; S Myalski; F Nebel; S Nishimura; C Nociforo; J Nyberg; A R Parikh; A Procházka; P H Regan; C Rigollet; H Schaffner; C Scheidenberger; S Schwertel; P-A Söderström; S J Steer; A Stolz; P Strmeň
Journal:  Nature       Date:  2012-06-20       Impact factor: 49.962

2.  The magic nature of (132)Sn explored through the single-particle states of (133)Sn.

Authors:  K L Jones; A S Adekola; D W Bardayan; J C Blackmon; K Y Chae; K A Chipps; J A Cizewski; L Erikson; C Harlin; R Hatarik; R Kapler; R L Kozub; J F Liang; R Livesay; Z Ma; B H Moazen; C D Nesaraja; F M Nunes; S D Pain; N P Patterson; D Shapira; J F Shriner; M S Smith; T P Swan; J S Thomas
Journal:  Nature       Date:  2010-05-27       Impact factor: 49.962

3.  Correlating Schiff Moments in the Light Actinides with Octupole Moments.

Authors:  Jacek Dobaczewski; Jonathan Engel; Markus Kortelainen; Pierre Becker
Journal:  Phys Rev Lett       Date:  2018-12-07       Impact factor: 9.161

4.  78Ni revealed as a doubly magic stronghold against nuclear deformation.

Authors:  R Taniuchi; C Santamaria; P Doornenbal; A Obertelli; K Yoneda; G Authelet; H Baba; D Calvet; F Château; A Corsi; A Delbart; J-M Gheller; A Gillibert; J D Holt; T Isobe; V Lapoux; M Matsushita; J Menéndez; S Momiyama; T Motobayashi; M Niikura; F Nowacki; K Ogata; H Otsu; T Otsuka; C Péron; S Péru; A Peyaud; E C Pollacco; A Poves; J-Y Roussé; H Sakurai; A Schwenk; Y Shiga; J Simonis; S R Stroberg; S Takeuchi; Y Tsunoda; T Uesaka; H Wang; F Browne; L X Chung; Z Dombradi; S Franchoo; F Giacoppo; A Gottardo; K Hadyńska-Klęk; Z Korkulu; S Koyama; Y Kubota; J Lee; M Lettmann; C Louchart; R Lozeva; K Matsui; T Miyazaki; S Nishimura; L Olivier; S Ota; Z Patel; E Şahin; C Shand; P-A Söderström; I Stefan; D Steppenbeck; T Sumikama; D Suzuki; Z Vajta; V Werner; J Wu; Z Y Xu
Journal:  Nature       Date:  2019-05-01       Impact factor: 49.962

5.  Structure of the Lightest Tin Isotopes.

Authors:  T D Morris; J Simonis; S R Stroberg; C Stumpf; G Hagen; J D Holt; G R Jansen; T Papenbrock; R Roth; A Schwenk
Journal:  Phys Rev Lett       Date:  2018-04-13       Impact factor: 9.161

6.  Enhanced Quadrupole and Octupole Strength in Doubly Magic ^{132}Sn.

Authors:  D Rosiak; M Seidlitz; P Reiter; H Naïdja; Y Tsunoda; T Togashi; F Nowacki; T Otsuka; G Colò; K Arnswald; T Berry; A Blazhev; M J G Borge; J Cederkäll; D M Cox; H De Witte; L P Gaffney; C Henrich; R Hirsch; M Huyse; A Illana; K Johnston; L Kaya; Th Kröll; M L Lozano Benito; J Ojala; J Pakarinen; M Queiser; G Rainovski; J A Rodriguez; B Siebeck; E Siesling; J Snäll; P Van Duppen; A Vogt; M von Schmid; N Warr; F Wenander; K O Zell
Journal:  Phys Rev Lett       Date:  2018-12-21       Impact factor: 9.161

7.  Novel Shape Evolution in Sn Isotopes from Magic Numbers 50 to 82.

Authors:  Tomoaki Togashi; Yusuke Tsunoda; Takaharu Otsuka; Noritaka Shimizu; Michio Honma
Journal:  Phys Rev Lett       Date:  2018-08-10       Impact factor: 9.161

8.  1p3/2 proton-hole state in 132Sn and the shell structure along N = 82.

Authors:  J Taprogge; A Jungclaus; H Grawe; S Nishimura; P Doornenbal; G Lorusso; G S Simpson; P-A Söderström; T Sumikama; Z Y Xu; H Baba; F Browne; N Fukuda; R Gernhäuser; G Gey; N Inabe; T Isobe; H S Jung; D Kameda; G D Kim; Y-K Kim; I Kojouharov; T Kubo; N Kurz; Y K Kwon; Z Li; H Sakurai; H Schaffner; K Steiger; H Suzuki; H Takeda; Zs Vajta; H Watanabe; J Wu; A Yagi; K Yoshinaga; G Benzoni; S Bönig; K Y Chae; L Coraggio; A Covello; J-M Daugas; F Drouet; A Gadea; A Gargano; S Ilieva; F G Kondev; T Kröll; G J Lane; A Montaner-Pizá; K Moschner; D Mücher; F Naqvi; M Niikura; H Nishibata; A Odahara; R Orlandi; Z Patel; Zs Podolyák; A Wendt
Journal:  Phys Rev Lett       Date:  2014-04-01       Impact factor: 9.161

9.  Fragmentation of Single-Particle Strength around the Doubly Magic Nucleus  ^{132}Sn and the Position of the 0f_{5/2} Proton-Hole State in ^{131}In.

Authors:  V Vaquero; A Jungclaus; T Aumann; J Tscheuschner; E V Litvinova; J A Tostevin; H Baba; D S Ahn; R Avigo; K Boretzky; A Bracco; C Caesar; F Camera; S Chen; V Derya; P Doornenbal; J Endres; N Fukuda; U Garg; A Giaz; M N Harakeh; M Heil; A Horvat; K Ieki; N Imai; N Inabe; N Kalantar-Nayestanaki; N Kobayashi; Y Kondo; S Koyama; T Kubo; I Martel; M Matsushita; B Million; T Motobayashi; T Nakamura; N Nakatsuka; M Nishimura; S Nishimura; S Ota; H Otsu; T Ozaki; M Petri; R Reifarth; J L Rodríguez-Sánchez; D Rossi; A T Saito; H Sakurai; D Savran; H Scheit; F Schindler; P Schrock; D Semmler; Y Shiga; M Shikata; Y Shimizu; H Simon; D Steppenbeck; H Suzuki; T Sumikama; D Symochko; I Syndikus; H Takeda; S Takeuchi; R Taniuchi; Y Togano; J Tsubota; H Wang; O Wieland; K Yoneda; J Zenihiro; A Zilges
Journal:  Phys Rev Lett       Date:  2020-01-17       Impact factor: 9.161

10.  First Glimpse of the N=82 Shell Closure below Z=50 from Masses of Neutron-Rich Cadmium Isotopes and Isomers.

Authors:  V Manea; J Karthein; D Atanasov; M Bender; K Blaum; T E Cocolios; S Eliseev; A Herlert; J D Holt; W J Huang; Yu A Litvinov; D Lunney; J Menéndez; M Mougeot; D Neidherr; L Schweikhard; A Schwenk; J Simonis; A Welker; F Wienholtz; K Zuber
Journal:  Phys Rev Lett       Date:  2020-03-06       Impact factor: 9.161

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