Measurement of lifetimes in Fe-62,Fe-64, Co-61,Co-63, and Mn-59

M. Klintefjord,J. Ljungvall, A. Görgen,S. M. Lenzi,F. L. Bello Garrote,A. Blazhev, E. Clément,J.-P. Delaroche,P. Désesquelles,A. Dewald, D. T. Doherty,C. Fransen, A. Gengelbach,G. Georgiev,M. Girod,A. Goasduff,A. Gottardo,K. Hadynska-Klek, B. Jacquot, T. Konstantinopoulos,A. Korichi,A. Lemasson, J. Libert, A. Lopez-Martens, C. Michelagnoli,A. Navin, J. Nyberg, R. M. Perez-Vidal,S. Roccia,E. Sahin,I. Stefan,A. E. Stuchbery, M. Zielinska, D. Barrientos,B. Birkenbach,A. J. Boston, L. Charles, M. Ciemała,J. Dudouet, J. Eberth, A. Gadea,V. González,L. Harkness-Brennan,H. Hess, A. Jungclaus,W. Korten, R. Menegazzo, D. Mengoni, B. Million,A. Pullia, D. Ralet, F. Recchia, P. Reiter,M. D. Salsac,E. Sanchis,O. Stezowski,Ch. Theisen,J. J. Valiente Dobon

PHYSICAL REVIEW C(2017)

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摘要
Lifetimes of the 4(1)(+) states in Fe-62,Fe-64 and the 11/2(1)(-) states in Co-61,Co-63 and Mn-59 were measured at the Grand Accelerateur National d'Ions Lourds (GANIL) facility by using the Advanced Gamma Tracking Array (AGATA) and the large-acceptance variable mode spectrometer (VAMOS++). The states were populated through multinucleon transfer reactions with a U-238 beam impinging on a Ni-64 target, and lifetimes in the picosecond range were measured by using the recoil distance Doppler shift method. The data show an increase of collectivity in the iron isotopes approaching N = 40. The reduction of the subshell gap between the nu 2p(1/2) and nu 1g(9/2) orbitals leads to an increased population of the quasi-SU(3) pair (nu 1g(9/2), nu 2d(5/2)), which causes an increase in quadrupole collectivity. This is not observed for the cobalt isotopes withN < 40 for which the neutron subshell gap is larger due to the repulsive monopole component of the tensor nucleon-nucleon interaction. The extracted experimental B(E2) values are compared with large-scale shell-model calculations and with beyond-mean-field calculations with the Gogny D1S interaction. A good agreement between calculations and experimental values is found, and the results demonstrate in particular the spectroscopic quality of the Lenzi, Nowacki, Poves, and Sieja (LNPS) shell-model interaction.
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