The first systematic experimental study of the neutron-rich Br isotopes with two complementary state-ofthe-art techniques is presented. These isotopes were populated in the fission process at two different facilities, GANIL and ILL. New spectroscopic information was obtained for odd-even Br87-93 isotopes and the experimental results were compared with state-of-the-art large scale shell model (LSSM) and discrete nonorthogonal (DNO) shell model calculations. As a result of such theoretical approaches, a transition from prolate (Br-87,Br-89) to oblate (Br-91,Br-93) shapes is obtained from the subtle balance between proton and neutron quadrupole deformations, as a clear signature of a pseudo-SU3 quadrupole regime.
High-resolution spectroscopy of neutron-rich Br isotopes and signatures for a prolate-to-oblate shape transition at N=56
Lenzi, S. M.Formal Analysis
;
2024
Abstract
The first systematic experimental study of the neutron-rich Br isotopes with two complementary state-ofthe-art techniques is presented. These isotopes were populated in the fission process at two different facilities, GANIL and ILL. New spectroscopic information was obtained for odd-even Br87-93 isotopes and the experimental results were compared with state-of-the-art large scale shell model (LSSM) and discrete nonorthogonal (DNO) shell model calculations. As a result of such theoretical approaches, a transition from prolate (Br-87,Br-89) to oblate (Br-91,Br-93) shapes is obtained from the subtle balance between proton and neutron quadrupole deformations, as a clear signature of a pseudo-SU3 quadrupole regime.File | Dimensione | Formato | |
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Br-PhysRevC.110.034304-Dudouet.pdf
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