$K^-$- nuclear states: Binding energies and widths
Abstract
optical potentials relevant to calculations of nuclear quasi-bound states were developed within several chiral meson-baryon coupled-channel interaction models. The applied models yield quite different binding energies and widths. Then, the multinucleon interactions were incorporated by a phenomenological optical potential fitted recently to kaonic atom data. Though the applied interaction models differ significantly in the subthreshold region, our self-consistent calculations of kaonic nuclei across the periodic table lead to conclusions valid quite generally. Due to multinucleon absorption in the nuclear medium the calculated widths of nuclear states are sizable, MeV, and exceed substantially their binding energies in all considered nuclei.
Keywords
Cite
@article{arxiv.1704.07205,
title = {$K^-$- nuclear states: Binding energies and widths},
author = {J. Hrtánková and J. Mareš},
journal= {arXiv preprint arXiv:1704.07205},
year = {2017}
}
Comments
25 pages, 24 figures