English

Triaxial projected shell model study of $\gamma$-bands in atomic nuclei

Nuclear Theory 2021-11-24 v1 Nuclear Experiment

Abstract

A systematic study of γ\gamma-bands observed in atomic nuclei is performed using the triaxial projected shell model (TPSM) approach. The staggering phase between the even and odd spin members of the γ\gamma-band for most the nuclei investigated in the present work is found to have even-I-below-odd-I, which in the framework of the collective model is considered as a signature of γ\gamma-softness. It is observed that out of twenty-three systems studied, only four nuclei, namely, 76^{76}Ge, 112^{112}Ru, 170^{170}Er and 232^{232}Th depict staggering phase with odd-I-below-even-I, which is regarded as an indication of the static γ\gamma-deformation in the collective model picture. The inclusion of the quasiparticle excitations in the framework of configuration mixing is shown to reverse the staggering phase from odd-I-down to the even-I-down for all the studied nuclei, except for the aforementioned four nuclei. Furthermore, by fitting a collective Bohr Hamiltonian to the TPSM energies, the differences between the two models are delineated through a comparison of the transition probabilities.

Keywords

Cite

@article{arxiv.2009.04135,
  title  = {Triaxial projected shell model study of $\gamma$-bands in atomic nuclei},
  author = {S. Jehangir and G. H. Bhat and J. A. Sheikh and S. Frauendorf and W. Li and R. Palit},
  journal= {arXiv preprint arXiv:2009.04135},
  year   = {2021}
}

Comments

12 pages, 15 figures