arXiv:hep-ph/0501102·v2·High Energy Physics — Phenomenology
Coupled-channels study of Lambda K and Sigma K states in the chiral SU(3) quark model
F. Huang🇨🇳 · D. Zhang🇨🇳 · Z.Y. Zhang🇨🇳 · Y.W. Yu🇨🇳
Abstract
The -wave and states with isospin are dynamically investigated within the framework of the chiral SU(3) quark model by solving a resonating group method (RGM) equation. The model parameters are taken from our previous work, which gave a good description of the energies of the baryon ground states, the binding energy of the deuteron, and the experimental data of the nucleon-nucleon () and nucleon-hyperon () scattering. Assumed not to give important contributions in the scattering processes, the s-channel quark-antiquark () annihilation interactions are not included as a first step. The results show a strong attraction between and , which consequently results in a quasi-bound state with about 17 MeV binding energy, unlike the case of which is unbound. When the channel coupling of and is considered, a sharp resonance state near 1670 MeV with spin-parity is found. The narrow gap of the and thresholds, the strong attraction between and , and the sizeable off-diagonal matrix elements of and are responsible for the appearance of this resonance.
Comments: 15 pages, 5 figures