English

A Cloudy Bag Model for the S-D Wave $\Kbar-N$ System

Nuclear Theory 2009-10-22 v2

Abstract

The cloudy quark bag model is applied to the coupled (\KbarN\Kbar N, Σπ\Sigma \pi, Λπ\Lambda \pi) system for SDS-D partial waves. Energy--dependent separable potentials are derived, as are new numerical algorithms for solving the coupled Lippmann-Schwinger equations. The parameters are fit to KpK^-p scattering and reaction cross sections, branching ratios, and mass spectra from KpΣπππ,ΛπππK^-p\rightarrow \Sigma\pi\pi\pi, \Lambda\pi\pi\pi. The ΣP13(1385)\Sigma_{P13}(1385) and ΛD03(1520)\Lambda_{D03}(1520) resonances are found to be predominately elementary bag states with considerable dressing for the ΣP13\Sigma_{P13}. The ΛS01(1405)\Lambda_{S01}(1405) appears as a complicated composite systems arising from two poles.

Keywords

Cite

@article{arxiv.nucl-th/9308003,
  title  = {A Cloudy Bag Model for the S-D Wave $\Kbar-N$ System},
  author = {Guangliang He and Rubin. H. Landau},
  journal= {arXiv preprint arXiv:nucl-th/9308003},
  year   = {2009}
}

Comments

40 pages, 10 figures available from Rubin Landau (rubin@physics.orst.edu) on request. Oregon State Univ. Nucl. Theory #NT-105

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