A study of the $KN$-$K^*N$ coupled systems
Abstract
We study the strangeness meson-baryon systems to obtain improved and amplitudes and to look for a possible resonance formation by the - coupled interaction. We obtain amplitudes for light vector meson-baryon systems by implementing the -, -, - channel diagrams and a contact interaction. The pseudoscalar meson-baryon interactions are obtained by relying on the Weinberg-Tomozawa theorem. The transition amplitudes between the systems consisting of pseudoscalars and vector mesons are calculated by extending the Kroll-Ruderman term for pion photoproduction replacing the photon by a vector meson. We fix the subtraction constants required to calculate the loops by fitting our amplitudes to the data available for the isospin 0 and 1 -wave phase shifts. We provide the scattering lengths and the total cross sections for the and systems obtained in our model, which can be useful in future in-medium calculations. Our amplitudes do not correspond to formation of any resonance in none of the isospin and spin configurations.
Keywords
Cite
@article{arxiv.1406.7203,
title = {A study of the $KN$-$K^*N$ coupled systems},
author = {K. P. Khemchandani and A. Martinez Torres and F. S. Navarra and M. Nielsen and L. Tolos},
journal= {arXiv preprint arXiv:1406.7203},
year = {2015}
}
Comments
Published version, sent to avoid confusions recently noticed by authors