English

Shell-model study for $^{204-210}$Tl isotopes and core excitations across the $Z = 82$ and $N = 126$ shell gaps

Nuclear Theory 2023-11-03 v1 Nuclear Experiment

Abstract

In the present work, the 204210^{204-210}Tl isotopes have been investigated by performing large-scale shell-model calculations, including configurations allowing both neutron and proton core excitations across the ZZ = 82 and NN = 126 shell gaps. Inspired by the recent high-spin experimental data, the structure of Tl isotopes has been studied for a considerably large model space. The KHHE interaction has been used for 204206^{204-206}Tl isotopes, KHH7B interaction for 204210^{204-210}Tl isotopes, and additionally KHM3Y interaction has been used for 208^{208}Tl isotope. The core excitation has been performed using the KHH7B and KHM3Y interactions. The level spectra of 204210^{204-210}Tl isotopes are comprehensively described and explained by multi-nucleon couplings of single-particle-hole orbitals within the valence space and by core excitations across 208^{208}Pb core. The well-known isomeric states are analyzed in terms of the shell model configurations.

Keywords

Cite

@article{arxiv.2311.00542,
  title  = {Shell-model study for $^{204-210}$Tl isotopes and core excitations across the $Z = 82$ and $N = 126$ shell gaps},
  author = {Bharti Bhoy and Praveen C. Srivastava},
  journal= {arXiv preprint arXiv:2311.00542},
  year   = {2023}
}

Comments

17 pages, 8 figures