Decays of 1/2^- Baryons in Chiral Effective Theory
arXiv:hep-ph/9710445 · doi:10.1103/PhysRevD.57.4124
Abstract
We construct an symmetric chiral effective model which includes parity pair baryon fields. It is assumed that the positive and negative parity baryons in the parity pair have opposite chiral transformation properties each other. Using this model, strong decays of the negative parity baryons are studied up to the order of one-loop corrections. The results agree qualitatively with experiment in the and channels. We examine how the model parameters are determined from the decay widths and study their physical meanings. Possibilities to build other models and relations to the correlation function analysis are discussed.
27 pp, LaTeX, 14 EPS figs, uses epsf.sty
References in corpus (2)
Cited by in corpus (36)
- The hadronic SU(3) Parity Doublet Model for Dense Matter, its extension to quarks and the strange equation of state
- Light baryons below and above the deconfinement transition: medium effects and parity doubling
- Cold, dense nuclear matter in a SU(2) parity doublet model
- Chiral Symmetry Realization for Even- and Odd-parity Baryon Resonances
- Thermodynamics of dense hadronic matter in a parity doublet model
- Hybrid Stars in an SU(3) Parity Doublet Model
- Nuclear Matter and Neutron stars in a Parity Doublet Model
- Higher-order baryon number susceptibilities: interplay between the chiral and the nuclear liquid-gas transitions
- Dilaton-Limit Fixed Point in Hidden Local Symmetric Parity Doublet Model
- Conformal anomaly and the vector coupling in dense matter
- Negative-parity baryon spectra in quenched anisotropic lattice QCD
- Medium effects to N(1535) resonance and eta mesic nuclei
- The application of the Quark-Hadron Chiral Parity-Doublet Model to neutron star matter
- Formation of mesic nuclei by (γ,p) reactions
- Neutron stars within the SU(2) parity doublet model
- eta-Nucleus interactions and in-medium properties of N*(1535) in chiral models
- Formation of eta-mesic nuclei by (pi,N) reaction and N^*(1535) in medium
- Constraint to chiral invariant masses of nucleons from GW170817 in an extended parity doublet model
- Examination of as a probe to observe the partial restoration of chiral symmetry in nuclear matter
- Casimir effect for nucleon parity doublets
- Extended Goldberger-Treiman relation obtained in a three-flavor parity doublet model
- Mirror versus naive assignment in chiral models for the nucleon
- Parity doubling of baryons in a chiral approach with three flavors
- Modelling Hybrid Stars in Quark-Hadron Approaches
- Impacts of anomaly on nuclear and neutron star equation of state based on a parity doublet model
- Chiral partner structure of light nucleons in an extended parity doublet model
- Enhancement of quark number susceptibility with an alternative pattern of chiral symmetry breaking in dense matter
- Spectral functions for meson and meson in nuclear matter with partial restoration of chiral symmetry
- Comprehensive study of mass modifications of light mesons in nuclear matter in the three-flavor extended Linear Sigma Model
- SU(3) parity doubling in cold neutron star matter
- The QCD Phase Diagram from Chiral Approaches
- Hadrons and Chiral Symmetry
- Negative-Parity Baryons in Quenched Anisotropic Lattice QCD
- Naive versus mirror assignment at finite density: correlator mixing and chiral symmetry restoration
- Chiral thermodynamics of dense hadronic matter
- Chiral, parity-doublet, effective-Lagrangian mean-field theories for nuclear and astrophysical phenomenology