arXiv:1208.0585·v2·High Energy Physics — Phenomenology
Meson vacuum phenomenology in a three-flavor linear sigma model with (axial-)vector mesons
Denis Parganlija (Vienna, Tech. U. and Frankfurt U.)🇦🇹 · Peter Kovacs (Frankfurt U. and Budapest, RMKI)🇩🇪 · Gyorgy Wolf (Budapest, RMKI)🇭🇺 · Francesco Giacosa (Frankfurt U.)🇩🇪 · Dirk H. Rischke (Frankfurt U. and Frankfurt U., FIAS)🇩🇪
Abstract
We study scalar, pseudoscalar, vector, and axial-vector mesons with non-strange and strange quantum numbers in the framework of a linear sigma model with global chiral symmetry. We perform a global fit of meson masses, decay widths, as well as decay amplitudes. The quality of the fit is, for a hadronic model that does not consider isospin-breaking effects, surprisingly good. We also investigate the question whether the scalar states lie below or above 1 GeV and find the scalar states above 1 GeV to be preferred as states. Additionally, we also describe the axial-vector resonances as states.
Comments: 29 pages, 4 figures, 3 tables. v2 is the updated version after referee remarks (dilaton field discussed, a new figure added)