Hadronic Spectral Functions in Nuclear Matter
Abstract
We study the in-medium properties of mesons and baryon resonances in cold nuclear matter within a coupled-channel analysis. The meson self energies are generated by particle-hole excitations. Thus multi-peak spectra are obtained for the mesonic spectral functions. In turn this leads to medium-modifications of the baryon resonances. Special care is taken to respect the analyticity of the spectral functions and to take into account effects from short-range correlations both for positive and negative parity states. Our model produces sensible results for pion and dynamics in nuclear matter. We find a strong interplay of the meson and the , which moves spectral strength of the spectrum to smaller invariant masses and leads to a broadening of the baryon resonance. The optical potential for the meson resulting from our model is rather attractive whereas the in-medium properties modifications of the are found to be quite small.
Cite
@article{arxiv.nucl-th/0309085,
title = {Hadronic Spectral Functions in Nuclear Matter},
author = {M. Post and S. Leupold and U. Mosel},
journal= {arXiv preprint arXiv:nucl-th/0309085},
year = {2009}
}
Comments
71 pages, 31 figures, accepted for Publication in Nuclear Physics A; minor modifications of the manuscript, several typos corrected