Effective multi-quark interactions with explicit breaking of chiral symmetry
A. A. Osipov, B. Hiller, A. H. Blin

TL;DR
This paper develops a comprehensive low-energy meson model incorporating multi-quark interactions and explicit chiral symmetry breaking, accurately reproducing meson spectra and decay processes.
Contribution
It introduces the most general spin zero multi-quark interactions with explicit symmetry breaking, extending the NJL model and matching Nc counting rules, to better describe meson phenomenology.
Findings
Accurately reproduces meson mass spectra including splittings
Predicts decay widths consistent with experimental data
Highlights importance of explicit symmetry breaking in meson interactions
Abstract
In a long distance Lagrangian approach to the low lying meson phenomenology we present and discuss the most general spin zero multi-quark interaction vertices of non-derivative type which include a set of effective interactions proportional to the current quark masses, breaking explicitely the chiral SU(3)_L X SU(3)_R and U_A(1) symmetries. These vertices are of the sameorder in Nc counting as the 't Hooft flavor determinant interaction and the 8 quark interactions which extend the original leading in Nc four quark interaction Lagrangian of Nambu and Jona-Lasinio. The Nc assignements match the counting rules based on arguments set by the scale of spontaneous chiral symmetry breaking. With path integral bosonization techniques which take appropriately into account the quark mass differences we derive the mesonic Lagrangian up to 3-point mesonic vertices. We demonstrate that explicit…
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