paper

-decay half-lives and -cluster preformation factors of nuclei around line

arXiv:2511.08051

Abstract

In this work, a microscopic effective nucleon-nucleon interaction based on the Dirac-Brueckner-Hartree-Fock matrix starting from a bare nucleon-nucleon interaction is used to explore the -decay half-lives of the nuclei near line. Specifically, the -nucleus potential is constructed by doubly folding the effective nucleon-nucleon interaction with respect to the density distributions of both the -cluster and daughter nucleus. Moreover, the -cluster preformation factor is extracted by a cluster formation model. It is shown that the calculated half-lives can reproduce the experimental data well. Then, the -decay half-lives that are experimentally unavailable for the nuclei around are predicted, which are helpful for searching for the new candidates of -decay in future experiments. In addition, by analyzing the proton-neutron correlation energy and two protons-two neutrons correlation energy of and isotopes, the -cluster preformation factor evolution with is explained. Furthermore, it is found that the two protons-two neutrons interaction plays more important role in -cluster preformation than the proton-neutron interaction. Meanwhile, proton-neutron interaction results in the odd-even effect of the -cluster preformation factor.