English

New effective interactions for hypernuclei in density dependent relativistic mean field model

Nuclear Theory 2021-12-08 v2

Abstract

New effective ΛN\Lambda N interactions are proposed for the density dependent relativistic mean field model. The multidimensionally constrained relativistic mean field model is used to calculate ground state properties of eleven known Λ\Lambda hypernuclei with A12A\ge 12 and the corresponding core nuclei. Based on effective NNNN interactions DD-ME2 and PKDD, the ratios RσR_\sigma and RωR_\omega of scalar and vector coupling constants between ΛN\Lambda N and NNNN interactions are determined by fitting calculated Λ\Lambda separation energies to experimental values. We propose six new effective interactions for Λ\Lambda hypernuclei: DD-ME2-Y1, DD-ME2-Y2, DD-ME2-Y3, PKDD-Y1, PKDD-Y2 and PKDD-Y3 with three ways of grouping and including these eleven hypernuclei in the fitting. It is found that the two ratios RσR_\sigma and RωR_\omega are correlated well and there holds a good linear relation between them. The statistical errors of the ratio parameters in these effective interactions are analyzed. These new effective interactions are used to study the equation of state of hypernuclear matter and neutron star properties with hyperons.

Keywords

Cite

@article{arxiv.2103.10706,
  title  = {New effective interactions for hypernuclei in density dependent relativistic mean field model},
  author = {Yu-Ting Rong and Zhong-Hao Tu and Shan-Gui Zhou},
  journal= {arXiv preprint arXiv:2103.10706},
  year   = {2021}
}

Comments

11 pages, 4 figures

R2 v1 2026-06-24T00:20:50.934Z