Eta-mesic nuclei in relativistic mean-field theory
Nuclear Theory
2008-11-26 v2
Abstract
With the eta-nucleon (eta N) interaction Lagrangian deduced from chiral perturbation theory, we study the possible eta-mesic nuclei in the framework of relativistic mean-field theory. The eta single-particle energies are sensitive to the eta N scattering length, and increase monotonically with the nucleon number A. If the scattering length is in the range of a^{eta N}=0.75-1.05 fm and the imaginary potential V_{0}-15 MeV, some discrete states of C, O and Ne eta bound states should be identified in experiments. However, when the scattering length a^{eta N}< 0.5 fm, or the imaginary potential V_{0} > 30 MeV, no discrete eta meson bound states could be observed in experiments.
Cite
@article{arxiv.0802.3738,
title = {Eta-mesic nuclei in relativistic mean-field theory},
author = {C. Y. Song and X. H. Zhong and L. Li and P. Z. Ning},
journal= {arXiv preprint arXiv:0802.3738},
year = {2008}
}
Comments
6 pages