Are there any narrow $K^-$- nuclear states?
Abstract
We performed self-consistent calculations of -nuclear quasi-bound states using a single-nucleon optical potential derived from chiral meson-baryon coupled-channel interaction models, supplemented by a phenomenological multinucleon potential introduced recently to achieve good fits to kaonic atom data [1]. Our calculations show that the effect of multinucleon interactions on widths in nuclei is decisive. The resulting widths are considerably larger than corresponding binding energies. Moreover, when the density dependence of the -multinucleon interactions derived in the fits of kaonic atoms is extended to the nuclear interior, the only two models acceptable after imposing as additional constraint the single-nucleon fraction of absorption at rest do not yield any kaonic nuclear bound state in majority of considered nuclei.
Keywords
Cite
@article{arxiv.1703.01788,
title = {Are there any narrow $K^-$- nuclear states?},
author = {Jaroslava Hrtankova and Jiri Mares},
journal= {arXiv preprint arXiv:1703.01788},
year = {2017}
}
Comments
14 pages, 7 figures