Three-flavor chiral effective model with four baryonic multiplets within the mirror assignment
arXiv:1604.05203 · doi:10.1088/1742-6596/742/1/012018
Abstract
We study three-flavor octet baryons by using the so-called extended Linear Sigma Model (eLSM). Within a quark-diquark picture, the requirement of a mirror assignment naturally leads to the consideration of four spin- baryon multiplets. A reduction of the Lagrangian to the two-flavor case leaves four doublets of nucleonic states which mix to form the experimentally observed states , , and . We determine the parameters of the nucleonic part of the Lagrangian from a fit to masses and decay properties of the aforementioned states. By tracing their masses when chiral symmetry is restored, we conclude that the pairs , and , form chiral partners.
Based on the presentation given at FAIRNESS 2016, Workshop for young scientists with research interests focused on physics at FAIR, 14-19 February 2016 Garmisch-Partenkirchen, Germany. 5 pages
References in corpus (11)
- Restoration of chiral and symmetries in excited hadrons
- Is f0(1710) a glueball?
- Cold, dense nuclear matter in a SU(2) parity doublet model
- Mixing of scalar tetraquark and quarkonia states in a chiral approach
- Decay of the pseudoscalar glueball into scalar and pseudoscalar mesons
- Threshold hyperon production in proton-proton collisions at COSY-11
- Axial charges of N(1535) and N(1650) in lattice QCD with two flavors of dynamical quarks
- A Three-Flavor Chiral Effective Model with Four Baryonic Multiplets within the Mirror Assignment
- The energy dependence of the pp->K+ n Sigma+ reaction close to threshold
- Evidence of N*(1535) resonance contribution in the pn->dϕreaction
- Lattice QCD study of with two flavors of dynamical quarks