English

Four- and Five-Body Scattering Calculations

High Energy Physics - Phenomenology 2008-11-26 v1

Abstract

We study the five-quark system uuddsˉuudd{\bar s} in the standard non-relativistic quark model by solving the scattering problem. Using the Gaussian Expansion Method (GEM), we perform the almost precise multi-quark calculations by treating a very large five-body modelspace including the NK scattering channel explicitly. Although a lot of pseudostates (discretized continuum states) with Jπ=1/2±J^\pi={1/2}^\pm and Jπ=3/2±J^\pi={3/2}^\pm are obtained within the bound-state approximation, all the states in 1.41.851.4-1.85 GeV in mass around Θ+(1540){\rm {\rm \Theta}}^+(1540) melt into non-resonant continuum states through the coupling with the NK scattering state in the realistic case, i.e., there is no five-quark resonance below 1.85GeV. Instead, we predict a five-quark resonance state of Jπ=1/2J^\pi={1/2}^- with the mass of about 1.9GeV and the width of Γ\Gamma \simeq 2.68MeV. Similar calculation is done for the four-quark system ccˉqqˉc{\bar c}q{\bar q} (q=u,dq=u,d) in connection with X0^0(3872).

Keywords

Cite

@article{arxiv.0707.4044,
  title  = {Four- and Five-Body Scattering Calculations},
  author = {Emiko Hiyama and Hideo Suganuma and Masayasu Kamimura},
  journal= {arXiv preprint arXiv:0707.4044},
  year   = {2008}
}
R2 v1 2026-06-21T09:02:18.655Z