English

Baryons in a chiral constituent quark model

High Energy Physics - Phenomenology 2015-06-25 v1 Nuclear Theory

Abstract

In the low-energy regime light and strange baryons should be considered as systems of constituent quarks with confining interaction and a chiral interaction that is mediated by Goldstone bosons as well as by vector and scalar mesons. The flavor-spin structure and sign of the short-range part of the spin-spin force reduces the SU(6)FSSU(6)_{FS} symmetry down to SU(3)F×SU(2)SSU(3)_F \times SU(2)_S, induces hyperfine splittings and provides correct ordering of the lowest states with positive and negative parity. There is a cancellation of the tensor force from pseudoscalar- and vector-exchanges in baryons. The spin-orbit interactions from ρ\rho-like and ω\omega-like exchanges also cancel each other in baryons while they produce a big spin-orbit force in NN system. A unified description of light and strange baryon spectra calculated in a semirelativistic framework is presented. It is demonstrated that the same short-range part of spin-spin interaction between the constituent quarks induces a strong short-range repulsion in NNNN system when the latter is treated as 6Q6Q system. Thus one can achieve a simultaneous understanding of a baryon structure and baryon-baryon interaction in the low-energy regime.

Keywords

Cite

@article{arxiv.hep-ph/9805345,
  title  = {Baryons in a chiral constituent quark model},
  author = {L. Ya. Glozman},
  journal= {arXiv preprint arXiv:hep-ph/9805345},
  year   = {2015}
}

Comments

13 pages, Lecture given at 4th Petersburg Winter School on Theoretical Physics in memory of V.N. Gribov

R2 v1 2026-07-22T14:43:44.644Z