$\beta$ decay of even-A nuclei within the interacting boson model based on nuclear density functional theory
Abstract
We compute the -decay -values within the frameworks of the energy density functional (EDF) and the interacting boson model (IBM). Based on the constrained mean-field calculation with the Gogny-D1M EDF, the IBM Hamiltonian for an even-even nucleus and essential ingredients of the interacting boson-fermion-fermion model (IBFFM) for describing the neighboring odd-odd nucleus are determined in a microscopic way. Only the boson-fermion and residual neutron-proton interaction strengths are determined empirically. The Gamow-Teller (GT) and Fermi (F) transition rates needed to compute the -decay -values are obtained without any additional parameter or quenching of the factor. The observed values for the decays of the even-even Ba into odd-odd Cs nuclei, and of the odd-odd Cs to the even-even Xe nuclei, with mass are reasonably well described. The predicted GT and F transition rates represent a sensitive test of the quality of the IBM and IBFFM wave functions.
Keywords
Cite
@article{arxiv.2002.12357,
title = {$\beta$ decay of even-A nuclei within the interacting boson model based on nuclear density functional theory},
author = {K. Nomura and R. Rodríguez-Guzmán and L. M. Robledo},
journal= {arXiv preprint arXiv:2002.12357},
year = {2020}
}
Comments
10 pages, 2 figures, 4 tables. arXiv admin note: text overlap with arXiv:1912.01846