Five-body calculation of resonance and scattering states of pentaquark system
arXiv:hep-ph/0507105 · doi:10.1016/j.physletb.2005.11.086
Abstract
Scattering problem of the system, in the standard non-relativistic quark model of Isgur-Karl, is solved for the first time, by treating the large five-body modelspace including the scattering channel accurately with the Gaussian expansion method and the Kohn-type coupled-channel variational method. The two-body interaction that reproduces observed properties of ordinary baryons and mesons is applied to the pentaquark system with no additional adjustable parameter. The five-body wave function calculated has the correct asymptotic form in its the scattering-channel component and describes and correlations properly. The scattering phase shift calculated shows no resonance in the energy region of the reported pentaquark , that is, at 0-500 MeV above the threshold ( GeV in mass). The phase shift does show two resonances just above 500 MeV: a broad resonance with a width of MeV located at MeV ( GeV in mass) and a sharp resonance with 0.12 MeV at 540 MeV. Properties of these states are discussed.
7pages, 6figures, Physics Letter B(2006), in press