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arXiv:2508.21391·v2·Nuclear Theory

Bohr-Mottelson Hamiltonian with octic potential applied to the Cd isotopes

P. Buganu · R. Budaca

Abstract

The Bohr-Mottelson Hamiltonian, with an octic potential in the -deformation variable, is numerically solved for a -unstable symmetry of the nuclear system. The analytical structure of the model allows the description of multiple phenomena of great interest for the nuclear structure such as ground-state shape phase transitions and their critical points, dynamical shape phase transitions, shape coexistence with and without mixing, anomalous in-band transitions, large intra-band transitions and large monopole transition between the first excited state and the ground state, respectively. As a first application of the present model is selected the Cd isotope chain known in literature to manifest shape phase transition, respectively shape coexistence and mixing.

Comments: 16 pages, one table, 20 figures

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