Literature DB >> 30608829

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

D Rosiak1, M Seidlitz1, P Reiter1, H Naïdja2,3,4, Y Tsunoda5, T Togashi5, F Nowacki2,3, T Otsuka5,6,7,8,9, G Colò10,11, K Arnswald1, T Berry12, A Blazhev1, M J G Borge13, J Cederkäll14, D M Cox15,16, H De Witte8, L P Gaffney13, C Henrich17, R Hirsch1, M Huyse8, A Illana8, K Johnston13, L Kaya1, Th Kröll17, M L Lozano Benito13, J Ojala15,16, J Pakarinen15,16, M Queiser1, G Rainovski18, J A Rodriguez13, B Siebeck1, E Siesling13, J Snäll14, P Van Duppen8, A Vogt1, M von Schmid17, N Warr1, F Wenander13, K O Zell1.   

Abstract

The first 2^{+} and 3^{-} states of the doubly magic nucleus ^{132}Sn are populated via safe Coulomb excitation employing the recently commissioned HIE-ISOLDE accelerator at CERN in conjunction with the highly efficient MINIBALL array. The ^{132}Sn ions are accelerated to an energy of 5.49  MeV/nucleon and impinged on a ^{206}Pb target. Deexciting γ rays from the low-lying excited states of the target and the projectile are recorded in coincidence with scattered particles. The reduced transition strengths are determined for the transitions 0_{g.s.}^{+}→2_{1}^{+}, 0_{g.s.}^{+}→3_{1}^{-}, and 2_{1}^{+}→3_{1}^{-} in ^{132}Sn. The results on these states provide crucial information on cross-shell configurations which are determined within large-scale shell-model and Monte Carlo shell-model calculations as well as from random-phase approximation and relativistic random-phase approximation. The locally enhanced B(E2;0_{g.s.}^{+}→2_{1}^{+}) strength is consistent with the microscopic description of the structure of the respective states within all theoretical approaches. The presented results of experiment and theory can be considered to be the first direct verification of the sphericity and double magicity of ^{132}Sn.

Entities:  

Year:  2018        PMID: 30608829     DOI: 10.1103/PhysRevLett.121.252501

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

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

Authors:  A R Vernon; R F Garcia Ruiz; T Miyagi; C L Binnersley; J Billowes; M L Bissell; J Bonnard; T E Cocolios; J Dobaczewski; G J Farooq-Smith; K T Flanagan; G Georgiev; W Gins; R P de Groote; R Heinke; J D Holt; J Hustings; Á Koszorús; D Leimbach; K M Lynch; G Neyens; S R Stroberg; S G Wilkins; X F Yang; D T Yordanov
Journal:  Nature       Date:  2022-07-13       Impact factor: 69.504

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.