Systematic shell-model study of structure and isomeric states in Bi isotopes
arXiv:2403.11174 · doi:10.1088/1361-6471/ad4d07
Abstract
In this work, we have performed systematic shell-model calculations for Bi isotopes with 204-213 using KHH7B and KHM3Y effective interactions. We have reported yrast and non-yrast shell-model states corresponding to the available experimental data. From the comparison with the experimental data, we could assign spin and parity of several unconfirmed states. We have also calculated electromagnetic properties and compared them with the available experimental data and predicted where experimental data are not available. This study also includes a detailed discussion of multiple isomeric states based on computed shell-model configurations and their respective half-lives.
Journal of Physics G: Nuclear and Particle Physics (2024)
References in corpus (10)
- Atlas of Nuclear Isomers -- Second Edition
- Measurement of the damping of nuclear shell effect in the doubly magic Pb region
- Shell-model description for the first-forbidden decay of Hg into the one-proton-hole nucleus Tl
- Emergence of an island of extreme nuclear isomerism at high excitation near Pb
- Single Particle Configurations of the Excited States of Po
- Systematic shell-model study for structure and isomeric states in Po isotopes
- High-spin spectroscopy in At: Evidence of a 29/2 isomeric state
- Systematic shell-model study of Cd isotopes and isomers in neutron-rich In isotopes
- Collectivity and isomers in the Pb isotopes
- Shell-model study for Tl isotopes and core excitations across the and shell gaps