arXiv · nucl-th/0601053
Dynamical coupled-channel approach to hadronic and electromagnetic production of kaon-hyperon on the proton
Abstract
A dynamical coupled-channel formalism for processes $πN \to KY$ and $γN \to KY$ is presented which provides a comprehensive investigation of recent data on the $γp \to K^+ Λ$ reaction. The non-resonant interactions within the subspace $KY\oplusπN$ are derived from effective Lagrangians, using a unitary transformation method. The calculations of photoproduction amplitudes are simplified by casting the coupled-channel equations into a form such that the empirical $γN \to πN$ amplitudes are input and only the parameters associated with the $KY$ channel are determined by performing $χ^2$-fits to all of the available data for $π^- p \to K^\circΛ, K^\circΣ^\circ$ and $γp \to K^+Λ$. Good agreement between our models and those data are obtained. In the fits to $πN \to KY$ channels, most of the parameters are constrained within $\pm 20%$ of the values given by the Particle Data Group and/or quark model predictions, while for $γp \to K^+ Λ$ parameters, ranges compatible with broken $SU(6)\otimes O(3)$ symmetry are imposed. The main reaction mechanisms in $K^+ Λ$ photoproduction are singled out and issues related to newly suggested resonances $S_{11}$, $P_{13}$, and $D_{13}$ are studied. Results illustrating the importance of using a coupled-channel treatment are reported. Meson cloud effects on the $γN \to N^*$ transitions are also discussed.
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B. Julia-Diaz, B. Saghai, T. -S. H. Lee, F. Tabakin. 2006-04-18. Dynamical coupled-channel approach to hadronic and electromagnetic production of kaon-hyperon on the proton. https://doi.org/10.1103/physrevc.73.055204
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