English

Systematic shell-model study for structure and isomeric states in $^{200-210}$Po isotopes

Nuclear Theory 2024-02-16 v2 Nuclear Experiment

Abstract

We report systematic large-scale shell-model calculation for Po isotopes with A=A= 200 to 210. We have performed calculations using KHH7B interaction in the model space ZZ = 58-114 and NN = 100-164 around doubly-magic 208^{208}Pb. We allow valence neutrons to occupy in the 1f5/21f_{5/2}, 2p3/22p_{3/2}, 2p1/22p_{1/2}, and 0i13/20i_{13/2} orbitals, while two valence protons beyond Z=82Z=82 are occupied in 0h9/20h_{9/2}, 1f7/21f_{7/2} and 0i13/20i_{13/2} orbitals. The calculated energies and electromagnetic properties are compared with the available experimental data and predicted where experimental data are not available. We have also reported shell-model results for different isomeric states of these nuclei.

Keywords

Cite

@article{arxiv.2305.15131,
  title  = {Systematic shell-model study for structure and isomeric states in $^{200-210}$Po isotopes},
  author = {Sakshi Shukla and Praveen C. Srivastava and Kosuke Nomura and Larry Zamick},
  journal= {arXiv preprint arXiv:2305.15131},
  year   = {2024}
}

Comments

35 pages, 12 figures