English

Parity-doublet bands in the odd-\bm{$A$} isotones \element{237}U and \element{239}Pu by a particle-number-conserving method based on the cranked shell model

Nuclear Theory 2023-02-22 v1 Nuclear Experiment

Abstract

Based on the reflection-asymmetric Nilsson potential, the parity-doublet rotational bands in odd-AA isotones \element{237}U and \element{239}Pu have been investigated by using the particle-number-conserving (PNC) method in the framework of the cranked shell model (CSM). The experimental kinematic moments of inertia (MOIs) and angular momentum alignments are reproduced very well by the PNC-CSM calculations. The significant differences of rotational properties between \element{237}U and \element{239}Pu are explained with the contribution of nucleons occupying proton octupole-correlation pairs of π2i13/2f7/2\pi ^{2} i_{13/2}f_{7/2}. The upbendings of moments of inertia of the parity-doublet bands in \element{237}U are due to the interference terms of alignments of protons occupying πf7/2\pi f_{7/2} (1/2{1/2}) and the high-jj intruder πi13/2\pi i_{13/2} (1/2,3/2)(1/2, 3/2) orbitals. The splittings between the simplex partner bands of the parity-doublet bands in both \element{237}U and \element{239}Pu result from the contribution of alignment of neutron occupying the νd5/2\nu d_{5/2} (1/21/2) orbital.

Keywords

Cite

@article{arxiv.2210.02022,
  title  = {Parity-doublet bands in the odd-\bm{$A$} isotones \element{237}U and \element{239}Pu by a particle-number-conserving method based on the cranked shell model},
  author = {Jun Zhang and Xiao-Tao He},
  journal= {arXiv preprint arXiv:2210.02022},
  year   = {2023}
}