English

High-$K$ multi-particle bands and pairing reduction in $^{254}$No

Nuclear Theory 2020-03-19 v1 Nuclear Experiment

Abstract

The multi-particle states and rotational properties of two-particle bands in 254^{254}No are investigated by the cranked shell model (CSM) with pairing correlations treated by a particle-number conserving (PNC) method. For the first time, the rotational bands on top of two-particle Kπ=3+,8K^{\pi}=3^+,8^- and 10+10^+ states and the pairing reduction are studied theoretically in 254^{254}No. The experimental excitation energies and moments of inertia for the multi-particle state are reproduced well by the calculation. Better agreement with the data are achieved by including the high-order deformation ε6\varepsilon_{6} which leads to enlarged Z=100Z=100 and N=152N=152 deformed shell gaps. The rise of the J(1)J^{(1)} in these two-particle bands compared with the ground-state band is attributed to the pairing reduction due to the Pauli blocking effects.

Keywords

Cite

@article{arxiv.1908.09525,
  title  = {High-$K$ multi-particle bands and pairing reduction in $^{254}$No},
  author = {Xiao-Tao He and Shu-Yong Zhao and Zhen-Hua Zhang and Zhong-Zhou Ren},
  journal= {arXiv preprint arXiv:1908.09525},
  year   = {2020}
}
R2 v1 2026-06-23T10:56:35.722Z