Pseudovector versus pseudoscalar coupling in kaon photoproduction - revisited
arXiv:nucl-th/0004007 · doi:10.1103/PhysRevC.61.068201
Abstract
The question of pseudovector versus pseudoscalar coupling schemes for the kaon-hyperon-nucleon interaction is re-examined for the reaction in several isobaric models. These models typically include Born terms, - and -exchange in the t-channel, and a few different combinations of spin-1/2 baryon resonances in the - and -channels. The coupling constants are obtained by fitting to a large data set. We find that both pseudoscalar and pseudovector couplings can allow for a satisfactory description of the present database. The resulting coupling constants, and , in the pseudovector coupling scheme are smaller than those predicted using flavor SU(3) symmetry, but consistent with the values obtained in a QCD sum rule calculation.
11 pages, 4 figures. to appear in Phys. Rev. C
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Cited by in corpus (10)
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- Photoproduction of on the proton
- Electromagnetic production of kaon near threshold
- Sigma photoproduction in the resonance region
- Dynamical coupled-channel model of kaon-hyperon interactions
- Constraints on background contributions from K+ Lambda electroproduction
- Goldberger-Treiman constraint criteria for hyperon coupling constants
- New fits to the reaction
- Photon induced K production on the proton in the low energy region