English

Multiple chiral doublet bands with octupole correlations in reflection-asymmetric triaxial particle rotor model

Nuclear Theory 2019-05-22 v1

Abstract

A reflection-asymmetric triaxial particle rotor model (RAT-PRM) with a quasi-proton and a quasi-neutron coupled with a reflection-asymmetric triaxial rotor is developed and applied to investigate the multiple chiral doublet (Mχ\chiD) bands candidates with octupole correlations in 78^{78}Br. The calculated excited energies, energy staggering parameters, and B(M1)/B(E2)B(M1)/B(E2) ratios are in a reasonable agreement with the data of the chiral doublet bands with positive- and negative-parity. The influence of the triaxial deformation γ\gamma on the calculated B(E1)B(E1) is found to be significant. By changing γ\gamma from 16^\circ to 21^\circ, the B(E1)B(E1) values will be enhanced and better agreement with the B(E1)/B(E2)B(E1)/B(E2) data is achieved. The chiral geometry based on the angular momenta for the rotor, the valence proton and valence neutron is discussed in details.

Keywords

Cite

@article{arxiv.1902.00191,
  title  = {Multiple chiral doublet bands with octupole correlations in reflection-asymmetric triaxial particle rotor model},
  author = {Y. Y. Wang and S. Q. Zhang and P. W. Zhao and J. Meng},
  journal= {arXiv preprint arXiv:1902.00191},
  year   = {2019}
}

Comments

17 pages, 5 figures