English

Static quadrupole moments of nuclear chiral doublet bands

Nuclear Theory 2020-07-15 v1 Nuclear Experiment

Abstract

The static quadrupole moments (SQMs) of nuclear chiral doublet bands are investigated for the first time taking the particle-hole configuration π(1h11/2)ν(1h11/2)1\pi(1h_{11/2}) \otimes \nu(1h_{11/2})^{-1} with triaxial deformation parameters in the range 260γ270260^\circ \leq \gamma \leq 270^\circ as examples. The behavior of the SQM as a function of spin II is illustrated by analyzing the components of the total angular momentum. It is found that in the region of chiral vibrations the SQMs of doublet bands are strongly varying with II, whereas in the region of static chirality the SQMs of doublet bands are almost constant. Hence, the measurement of SQMs provides a new criterion for distinguishing the modes of nuclear chirality. Moreover, in the high-spin region the SQMs can be approximated by an analytic formula with a proportionality to cosγ\cos\gamma for both doublet bands. This provides a way to extract experimentally the triaxial deformation parameter γ\gamma for chiral bands from the measured SQMs.

Keywords

Cite

@article{arxiv.2005.03865,
  title  = {Static quadrupole moments of nuclear chiral doublet bands},
  author = {Q. B. Chen and N. Kaiser and Ulf-G. Meißner and J. Meng},
  journal= {arXiv preprint arXiv:2005.03865},
  year   = {2020}
}

Comments

7 pages, 4 figures