Light baryon magnetic moments and N -> Delta gamma transition in a Lorentz covariant chiral quark approach
arXiv:hep-ph/0608015 · doi:10.1103/PhysRevD.74.074010
Abstract
We calculate magnetic moments of light baryons and N -> Delta gamma transition characteristics using a manifestly Lorentz covariant chiral quark approach for the study of baryons as bound states of constituent quarks dressed by a cloud of pseudoscalar mesons.
29 pages, 10 figures, accepted for publication in Phys. Rev. D
References in corpus (1)
Cited by in corpus (16)
- Nucleon Electromagnetic Form Factors
- Electromagnetic excitation of the Delta(1232)-resonance
- Strong and radiative decays of the Ds0*(2317) meson in the DK-molecule picture
- Estimate for the X(3872) to gamma J/psi decay width
- X(3872) as a hadronic molecule and its decays to charmonium states and pions
- D* K molecular structure of the Ds1(2460) meson
- Ds0*(2317) and Ds1(2460) mesons in two-body B-meson decays
- D-state effects in the electromagnetic N-Delta transition
- Molecular structure of the Bs0*(5725) and Bs1(5778) bottom-strange mesons
- f0(980) meson as a K bar K molecule in a phenomenological Lagrangian approach
- Strong and radiative decays of the scalars f0(980) and a0(980) in a hadronic molecule approach
- Phenomenological Lagrangian approach to the electromagnetic deuteron form factors
- Weak decays of heavy hadron molecules involving the f0(980)
- Chiral corrections to the vector and axial couplings of quarks and baryons
- Dependence of nucleon properties on pseudoscalar meson masses
- Decays, contact P-wave interactions and hyperfine structure in Omega- exotic atoms