English

Beyond mean-field approach for pear-shaped hypernuclei

Nuclear Theory 2018-11-07 v1

Abstract

We develop both relativistic mean field and beyond approaches for hypernuclei with possible quadrupole-octupole deformation or pear-like shapes based on relativistic point-coupling energy density functionals. The symmetries broken in the mean-field states are recovered with parity, particle-number, and angular momentum projections. We take Λ21^{21}_\LambdaNe as an example to illustrate the method, where the Λ\Lambda hyperon is put on one of the two lowest-energy orbits (labeled as Λs,Λp\Lambda_s, \Lambda_p), respectively. We find that the Λ\Lambda hyperon in both cases disfavors the formation of a reflection-asymmetric molecular-like 16^{16}O+α+\alpha structure in 20^{20}Ne, which is consistent with the Nilsson diagram for the hyperon in (β2,β3)(\beta_2, \beta_3) deformation plane. In particular, we show that the negative-parity states with the configuration 20^{20}Ne(Kπ=0)ΛsK^\pi=0^-)\otimes \Lambda_s are close in energy to those with the configuration 20^{20}Ne(Kπ=0+)ΛpK^\pi=0^+)\otimes \Lambda_p, even though they have very different structures. The Λs\Lambda_s (Λp\Lambda_p) becomes more and more concentrated around the bottom (top) of the "pear" with the increase of octupole deformation.

Keywords

Cite

@article{arxiv.1811.01486,
  title  = {Beyond mean-field approach for pear-shaped hypernuclei},
  author = {H. J. Xia and X. Y. Wu and H. Mei and J. M. Yao},
  journal= {arXiv preprint arXiv:1811.01486},
  year   = {2018}
}

Comments

7 pages, 6 figures, to be published in SCIENCE CHINA Physics, Mechanics & Astronomy (2019)

R2 v1 2026-06-23T05:03:47.865Z