English

Improved Coupled Channels and R-Matrix Models: Predictions to 1 Gev

Nuclear Theory 2007-05-23 v1

Abstract

The NNNN scattering near inelastic threshold is sensitive to the long-range diagonal interaction in the produced isobar channel. Earlier models included meson exchange potentials in the NNNN sector and connecting that sector to isobar channels, as well as an RR-matrix description of short-range quark effects. Including the diagonal pion exchange contributions in the NΔN\Delta channels coupled to the very inelastic 1D2{}^1D_2 and 3F3{}^3F_3 NNNN channels substantially improves those phase parameters and the observables ΔσL\Delta\sigma_{L} and ΔσT\Delta\sigma_{T}. The same improvement is made to the other I=1I=1 NNNN channels. In the 1S0{}^1S_0 NNNN channel coupling to the ΔΔ\Delta\Delta channel is unusually important due to the L=2L=2 angular momentum barrier in the NΔN\Delta channel. The pion exchange transition potentials between isobar channels are included in this partial wave to obtain the correct equilibrium between one- and two-pion decay channels. Other improvements to earlier models have been made, in the specification of isobar channels and the inclusion of decay width effects in more channels. A comparison is made with all the pppp data for TL800T_L \le 800~MeV, producing a very good fit over the whole energy range.

Keywords

Cite

@article{arxiv.nucl-th/9306026,
  title  = {Improved Coupled Channels and R-Matrix Models: Predictions to 1 Gev},
  author = {P. LaFrance and E. L. Lomon and M. Aw},
  journal= {arXiv preprint arXiv:nucl-th/9306026},
  year   = {2007}
}

Comments

31 pages in Plain TeX (with figures to be added using FIGURES command), MIT CTP #2133