Repulsive Core of NN S-Wave Scattering in a Quark Model with a Condensed Vacuum

Phys.Rev.C56:670-678,1997 We work in a chiral invariant quark model, with a condensed vacuum, characterized by only one parameter. Bound state equations for the nucleon and Delta are solved in order to obtain an updated value of their radii and masses. Nucleon-nucleon S-Wave scattering is studied in...

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Hauptverfasser: Bicudo, P. J. A, Ferreira, L. S, Plácido, C. M, Ribeiro, J. E. F. T
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Sprache:eng
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Zusammenfassung:Phys.Rev.C56:670-678,1997 We work in a chiral invariant quark model, with a condensed vacuum, characterized by only one parameter. Bound state equations for the nucleon and Delta are solved in order to obtain an updated value of their radii and masses. Nucleon-nucleon S-Wave scattering is studied in the RGM framework both for isospin T=1 and T=0. The phase shifts are calculated and an equivalent local potential, which is consistent with K-N scattering, is derived. The result is a reasonable microscopic short range repulsion in the nucleon-nucleon interaction.
DOI:10.48550/arxiv.nucl-th/9703007