The Meson Spectrum in a Covariant Quark Model
Abstract
Within the framework of the instantaneous Bethe-Salpeter equation, we present a detailed analysis of light meson spectra with respect to various parameterizations of confinement in Dirac space. Assuming a linearly rising quark-antiquark potential, we investigate two different spinorial forms (Dirac structures), namely as well as the -invariant combination , both providing a good description of the ground state Regge trajectories up to highest observed angular momenta. Whereas the first structure is slightly prefered concerning numerous meson decay properties (see \cite{pap41}), we find the -invariant force to be much more appropriate for the description of a multitude of higher mass resonances discovered in the data of the {\sc Crystal Barrel} collaboration during the last few years. Furthermore, this confinement structure has the remarkable feature to yield a linear dependence of masses on their radial excitation number. For many experimental resonances such a trajectory-like behaviour was observed by Anisovich {\it et al.} We can confirm that almost the same slope occurs for all trajectories. Adding the -breaking instanton induced 't Hooft interaction we can compute the pseudoscalar mass splittings with both Dirac structures and for the scalar mesons a natural mechanism of flavour mixing is achieved. [...]
Keywords
Cite
@article{arxiv.hep-ph/0008221,
title = {The Meson Spectrum in a Covariant Quark Model},
author = {Ralf Ricken and Matthias Koll and Dirk Merten and Bernard Ch. Metsch and Herbert R. Petry},
journal= {arXiv preprint arXiv:hep-ph/0008221},
year = {2009}
}
Comments
32 pages including 19 figures and 3 tables; submitted to Eur. Phys. A