Inelastic photon scattering and the magnetic moment of the (1232) resonance
arXiv:nucl-th/0003035 · doi:10.1016/S0370-2693(00)00654-7
Abstract
The reaction has been suggested as a means to deduce the magnetic moment. The cross section for this process is estimated in both the constituent quark model and an effective Lagrangian procedure. The resulting total cross section is of the order 5-10 nb, which is at the limit of present experimental capabilities.
11 pages, 3 figures
References in corpus (1)
Cited by in corpus (18)
- Electromagnetic excitation of the Delta(1232)-resonance
- Study of Non-Strange Baryon Resonances with Meson Photoproduction
- The reaction and the magnetic dipole moment of the resonance
- Chiral Effective-Field Theory in the Delta(1232) Region: Pion Electroproduction on the Nucleon
- Magnetic moment of the Delta(1232)-resonance in chiral effective field theory
- The nucleon and Delta(1232) form factors at low momentum-transfer and small pion masses
- Magnetic dipole moment of the (1232) from the reaction
- Chiral effective-field theory in the Delta(1232) region: II. radiative pion photoproduction
- Radiative pi0 photoproduction on protons in the Delta+(1232) region
- Magnetic dipole moment of the S11(1535) from the γp \to γηp reaction
- Unitary model for the reaction and the magnetic dipole moment of the
- Beam normal spin asymmetry for the process
- Magnetic dipole moment of the in chiral perturbation theory
- The Delta(1232) Resonance in Chiral Effective Field Theory
- Two-current transition amplitudes with two-body final states
- Radiative pion photoproduction in covariant chiral perturbation theory
- Field-theoretical three-body relativistic equations for the multichannel reactions
- Two-photon physics