English

$\Xi$ hyper-nuclear states predicted by NLO chiral baryon-baryon interactions

Nuclear Theory 2021-07-09 v1

Abstract

The Ξ\Xi single-particle potential obtained in nuclear matter with the next-to-leading order baryon-baryon interactions in chiral effective field theory is applied to finite nuclei by an improved local-density approximation method. As a premise, phase shifts of ΞN\Xi N elastic scattering and the results of Faddeev calculations for the ΞNN\Xi NN bound state problem are presented to show the properties of the ΞN\Xi N interactions in the present parametrization. First, the Ξ\Xi states in 14^{14}N are revisited because of the recent experimental progress, including the discussion on the ΞN\Xi N spin-orbit interaction that is relevant to the location of the pp-state. Then the Ξ\Xi levels in 56^{56}Fe are calculated. In particular, the level shift which is expected to be measured experimentally in the near future is predicted. The smallness of the imaginary part of the Ξ\Xi single-particle potential is explicitly demonstrated.

Keywords

Cite

@article{arxiv.2107.03784,
  title  = {$\Xi$ hyper-nuclear states predicted by NLO chiral baryon-baryon interactions},
  author = {M. Kohno and K. Miyagawa},
  journal= {arXiv preprint arXiv:2107.03784},
  year   = {2021}
}

Comments

7 pages, 7 figures