English

Structure of Krypton Isotopes using the Generalised Bohr Hamiltonian Method

Nuclear Theory 2021-11-02 v1

Abstract

We investigate the properties of the excited spectra of the even-even isotopes of krypton using a Generalised Bohr Hamiltonian with three different Skyrme functionals. In particular, we investigate the evolution of the low-lying 21+2^{+}_{1} and 41+4^{+}_{1} states and their associated electromagnetic transitions. The model reproduces quite nicely the energy trends apart from 88{}^{88}Kr, where none of the interactions used here are able to grasp a sudden change in the energy spectrum. Additionally, we explore the neutron deficient region 7276{}^{72-76}Kr which is a proposed region for shape coexistence. We observe that the model can reproduce the structure of the experimental spectrum of 72{}^{72}Kr exceedingly well.

Keywords

Cite

@article{arxiv.2004.10835,
  title  = {Structure of Krypton Isotopes using the Generalised Bohr Hamiltonian Method},
  author = {David Muir and Leszek Próchniak and Alessandro Pastore and Jacek Dobaczewski},
  journal= {arXiv preprint arXiv:2004.10835},
  year   = {2021}
}

Comments

Presented at the 27th International Nuclear Physics Conference (INPC) 2019, Glasgow, Scotland, UK, 29th July - 2 August

R2 v1 2026-06-23T15:02:19.274Z