English

Relativistic Mean-Field and Beyond Approaches for Deformed Hypernuclei

Nuclear Theory 2019-09-04 v1

Abstract

We report the recent progress in relativistic mean-field (RMF) and beyond approaches for the low-energy structure of deformed hypernuclei. We show that the Λ\Lambda hyperon with orbital angular momentum =0\ell=0 (or >1\ell>1) generally reduces (enhances) nuclear quadrupole collectivity. The beyond mean-field studies of hypernuclear low-lying states demonstrate that there is generally a large configuration mixing between the two components [A1Z(I+)Λp1/2]J[^{A-1}Z (I^+) \otimes \Lambda p_{1/2}]^J and [A1Z(I±2+)Λp3/2]J[^{A-1}Z (I\pm2 ^+) \otimes \Lambda p_{3/2}]^J in the hypernuclear 1/21,3/211/2^-_1, 3/2^-_1 states. The mixing weight increases as the collective correlation of nuclear core becomes stronger. Finally, we show how the energies of hypernuclear low-lying states are sensitive to parameters in the effective NΛN \Lambda interaction, the uncertainty of which has a large impact on the predicted maximal mass of neutron stars.

Keywords

Cite

@article{arxiv.1808.04042,
  title  = {Relativistic Mean-Field and Beyond Approaches for Deformed Hypernuclei},
  author = {J. M. Yao and H. Mei and K. Hagino and T. Motoba},
  journal= {arXiv preprint arXiv:1808.04042},
  year   = {2019}
}

Comments

12 pages, 7 figures. A plenary talk given at the 13th International Conference on Hypernuclear and Strange Particle Physics, June 24-29, 2018, Portsmouth, VA