PaperPanorama

arXiv:2607.26499·v1·Nuclear Theory

Impacts of hexadecapole correlations in actinide nuclei

L. Lotina · K. Nomura · R. Rodr\'ıguez-Guzmán · L. M. Robledo

Abstract

The impact of hexadecapole correlations on the low-energy spectroscopic properties of Th, U, and Pu nuclei, within the mass range , is studied systematically using the mapped -IBM model. Fermionic input is obtained via the quadrupole-hexadecapole constrained Hartree-Fock-Bogoliubov approximation, based on the parametrization D1S of the Gogny energy density functional. The -IBM Hamiltonian parameters are determined by mapping the quadrupole-hexadecapole fermionic mean-field potential energy surfaces onto the corresponding bosonic surfaces. The low-energy spectra and transition strengths, obtained via the diagonalization of the -IBM Hamiltonian, compare well with the available experimental data. It is shown that the effects of hexadecapole collectivity can be observed in high-spin yrast states with spins . The mapped -IBM improves the excitation energies of those states, as compared with the simpler -IBM model. The -IBM also improves the description of the transition strengths between high-spin yrast states and predicts strong transitions from nonyrast states to the ground state.

Comments: 14 pages, 10 figures