English

Triaxially deformed relativistic point-coupling model for $\Lambda$ hypernuclei: a quantitative analysis of hyperon impurity effect on nuclear collective properties

Nuclear Theory 2015-03-10 v2 Nuclear Experiment

Abstract

The impurity effect of hyperon on atomic nuclei has received a renewed interest in nuclear physics since the first experimental observation of appreciable reduction of E2E2 transition strength in low-lying states of hypernucleus Λ7^{7}_\LambdaLi. Many more data on low-lying states of Λ\Lambda hypernuclei will be measured soon for sdsd-shell nuclei, providing good opportunities to study the Λ\Lambda impurity effect on nuclear low-energy excitations. We carry out a quantitative analysis of Λ\Lambda hyperon impurity effect on the low-lying states of sdsd-shell nuclei at the beyond-mean-field level based on a relativistic point-coupling energy density functional (EDF), considering that the Λ\Lambda hyperon is injected into the lowest positive-parity (Λs\Lambda_s) and negative-parity (Λp\Lambda_p) states. We adopt a triaxially deformed relativistic mean-field (RMF) approach for hypernuclei and calculate the Λ\Lambda binding energies of hypernuclei as well as the potential energy surfaces (PESs) in (β,γ)(\beta, \gamma) deformation plane. We also calculate the PESs for the Λ\Lambda hypernuclei with good quantum numbers using a microscopic particle rotor model (PRM) with the same relativistic EDF. The triaxially deformed RMF approach is further applied in order to determine the parameters of a five-dimensional collective Hamiltonian (5DCH) for the collective excitations of triaxially deformed core nuclei. Taking Λ25,27^{25,27}_{\Lambda}Mg and Λ31^{31}_{\Lambda}Si as examples, we analyse the impurity effects of Λs\Lambda_s and Λp\Lambda_p on the low-lying states of the core nuclei...

Keywords

Cite

@article{arxiv.1412.4201,
  title  = {Triaxially deformed relativistic point-coupling model for $\Lambda$ hypernuclei: a quantitative analysis of hyperon impurity effect on nuclear collective properties},
  author = {W. X. Xue and J. M. Yao and K. Hagino and Z. P. Li and H. Mei and Y. Tanimura},
  journal= {arXiv preprint arXiv:1412.4201},
  year   = {2015}
}

Comments

15 pages with 18 figures and 1 table (version to be published in Physical Review C)

R2 v1 2026-06-22T07:30:01.152Z