Resonances and the Weinberg--Tomozawa 56-baryon --35-meson interaction
Abstract
Vector meson degrees of freedom are incorporated into the Weinberg-Tomozawa (WT) meson-baryon chiral Lagrangian by using a scheme which relies on spin--flavor SU(6) symmetry. The corresponding Bethe-Salpeter approximation successfully reproduces previous SU(3)--flavor WT results for the lowest-lying s--wave negative parity baryon resonances, and it also provides some information on the dynamics of the heavier ones. Moreover, it also predicts the existence of an isoscalar spin-parity bound state (strangeness +1) with a mass around 1.7--1.8 GeV, unstable through decay. Neglecting d-wave KN decays, this state turns out to be quite narrow ( MeV) and it might provide clear signals in reactions like by looking at the three body invariant mass.
Keywords
Cite
@article{arxiv.hep-ph/0610127,
title = {Resonances and the Weinberg--Tomozawa 56-baryon --35-meson interaction},
author = {C. Garcia-Recio and J. Nieves and L. L. Salcedo},
journal= {arXiv preprint arXiv:hep-ph/0610127},
year = {2008}
}
Comments
Talk given at the IVth International Conference on Quarks an Nuclear Physics, Madrid, June 5th-10th 2006. Minor corrections