Understanding the $f_0(980)$ and $a_0(980)$ masses as well as their widths
Abstract
The low and approximately equal masses of the scalar mesons and , as well as their relatively small decay widths, are impossible to understand in terms of standard -wave quark-antiquark states. Here, these mesons are studied in a unitarised quark-meson model, together with the other light isoscalar scalar , as members of a complete scalar nonet below about 1 GeV. They are shown to be dynamical states generated by a combination of quark-confinement and strong-decay interactions, resulting in a large breaking of symmetry. This is illustrated with several pole trajectories in the complex-energy plane as a function of the model's decay coupling constant. Also, experimental evidence is presented of a still much lighter scalar boson called , which may correspond to a novel kind of mesons predicted by V. N. Gribov, as an observable manifestation of a condensate of light quarks.
Keywords
Cite
@article{arxiv.2012.04994,
title = {Understanding the $f_0(980)$ and $a_0(980)$ masses as well as their widths},
author = {Eef van Beveren and George Rupp},
journal= {arXiv preprint arXiv:2012.04994},
year = {2021}
}
Comments
Invited contribution to the Gribov-90 Memorial Volume, to be published by World Scientific Publishing Company; 15 pages, 5 figures