English

Novel shape evolution in exotic Ni isotopes and configuration-dependent shell structure

Nuclear Theory 2015-06-17 v2 Nuclear Experiment

Abstract

The shapes of neutron-rich exotic Ni isotopes are studied. Large-scale shell model calculations are performed by advanced Monte Carlo Shell Model (MCSM) for the pfpf-g9/2g_{9/2}-d5/2d_{5/2} model space. Experimental energy levels are reproduced well by a single fixed Hamiltonian. Intrinsic shapes are analyzed for MCSM eigenstates. Intriguing interplays among spherical, oblate, prolate and gamma-unstable shapes are seen including shape fluctuations, EE(5)-like situation, the magicity of doubly-magic 56,68,78^{56,68,78}Ni, and the coexistence of spherical and strongly deformed shapes. Regarding the last point, strong deformation and change of shell structure can take place simultaneously, being driven by the combination of the tensor force and changes of major configurations within the same nucleus.

Keywords

Cite

@article{arxiv.1309.5851,
  title  = {Novel shape evolution in exotic Ni isotopes and configuration-dependent shell structure},
  author = {Y. Tsunoda and T. Otsuka and N. Shimizu and M. Honma and Y. Utsuno},
  journal= {arXiv preprint arXiv:1309.5851},
  year   = {2015}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-22T01:32:20.103Z