English

Octupole deformation for Ba isotopes in a reflection-asymmetric relativistic mean-field approach

Nuclear Theory 2011-04-07 v1

Abstract

The potential energy surfaces of even-even 142156^{142-156}Ba are investigated in the constrained reflection-asymmetric relativistic mean-field approach with parameter set PK1. It is shown that for the ground states, 142^{142}Ba is near spherical,156^{156}Ba well quadrupole-deformed, and in between 144154^{144-154}Ba octupole deformed. In particular, the nuclei 148,150^{148,150}Ba with N=92,94N=92,94 have the largest octupole deformations. By including the octupole degree of freedom, energy gaps N=88N=88, N=94N=94 and Z=56Z=56 near Fermi surfaces for the single-particle levels in 148^{148}Ba with β20.26\beta_2\sim 0.26 and β30.17\beta_3\sim 0.17 are found. Furthermore, the performance of the octupole deformation driving pairs (ν2f7/2\nu 2f_{7/2}, ν1i13/2\nu 1i_{13/2}) and (π2d5/2\pi 2d_{5/2}, π1h11/2\pi 1h_{11/2}) is demonstrated by analyzing the single-particle levels near Fermi surfaces in 148^{148}Ba.

Keywords

Cite

@article{arxiv.1008.1888,
  title  = {Octupole deformation for Ba isotopes in a reflection-asymmetric relativistic mean-field approach},
  author = {W. Zhang and Z. P. Li and S. Q. Zhang},
  journal= {arXiv preprint arXiv:1008.1888},
  year   = {2011}
}

Comments

7 pages, 3 figures, 3 tables