paper

Quark-Model Baryon-Baryon Interaction Applied to the Neutron-Deuteron Scattering (II) Polalization Observables of the Elastic Scattering

arXiv:1101.2977 · doi:10.1143/PTP.125.729

Abstract

The neutron-deuteron (nd) scattering is solved in the Faddeev formalism, employing the energy-independent version of the quark-model baryon-baryon interaction fss2. The differential cross sections and the spin polarization of the elastic scattering up to the neutron incident energy MeV are well reproduced without reinforcing fss2 with the three-body force. The vector analyzing-power of the neutron, , in the energy region < 25 MeV is largely improved in comparison with the predictions by the meson-exchange potentials, thus yielding a partial solution of the long-standing -puzzle owing to the nonlocality of the short-range repulsion produced by the quark-model baryon-baryon interaction. The large Coulomb effect in the vector and tensor analyzing-powers in < 10 MeV is also analyzed based on the Vincent and Phatak method and recent detailed studies by other authors.

45 pages, 16 figures, 1 table, submitted to Prog. Theor. Phys

Quark-Model Baryon-Baryon Interaction Applied to the Neutron-Deuteron Scattering (II) Polalization Observables of the Elastic Scattering · wovepaper