Final state interaction effects in electrodisintegration of the deuteron within the Bethe-Salpeter approach
arXiv:1110.5775 · doi:10.1134/S0021364011220036
Abstract
The electrodisintegration of the deuteron is considered within a relativistic model of nucleon-nucleon interaction based on the Bethe-Salpeter approach with a separable interaction kernel. The exclusive cross section is calculated within the impulse approximation under various kinematic conditions. Final state interactions between the outgoing nucleons are taken into account. The comparison of nonrelativistic and relativistic calculations is presented. Partial-wave states of the neutron-proton pair with total angular momentum are considered.
6 pages, 3 figures, 2 tables
References in corpus (6)
- Bethe-Salpeter approach with the separable interaction for the deuteron
- A new calculation for D(e,e'p)n at GeV energies
- Relativistic multirank interaction kernels of the neutron-proton system
- Covariant separable interaction for the neutron-proton system in - partial-wave state
- Relativistically invariant analysis of polarization effects in exclusive deuteron electrodisintegration process
- One-rank interaction kernel of the two-nucleon system for medium and high energies
Cited by in corpus (6)
- Solving Bethe-Salpeter scattering state equation in Minkowski space
- Bethe-Salpeter scattering amplitude in Minkowski space
- Transition electromagnetic form factor and current conservation in the Bethe-Salpeter approach
- Present status of the Bethe-Salpeter approach in Minkowski space
- Transition electromagnetic form factor in the Minkowski space Bethe-Salpeter approach
- Current conservation in electrodisintegration of a bound system in the Bethe-Salpeter approach