PaperPanorama

arXiv:nucl-th/0007025·v1·Nuclear Theory

Meson-Meson Scattering in the Quark Model: Spin Dependence and Exotic Channels

T.Barnes (1-4)🇺🇸 · N.Black (2)🇺🇸 · E.S.Swanson (5,6) ((1) Physics Division, Oak Ridge National Laboratory, (2) Department of Physics and Astronomy, University of Tennessee, (3) Institut fur Theoretische Kernphysik der Universitat Bonn, (4) Institut fur Kernphysik, Forschungszentrum Julich, (5) Department of Physics and Astronomy, University of Pittsburgh, (6) Jefferson Laboratory)🇺🇸

Abstract

We apply a quark interchange model to spin-dependent and exotic meson-meson scattering. The model includes the complete set of standard quark model forces, including OGE spin-orbit and tensor and scalar confinement spin-orbit. Scattering amplitudes derived assuming SHO and Coulomb plus linear plus hyperfine meson wavefunctions are compared. In I=2 pi pi we find approximate agreement with the S-wave phase shift from threshold to 1.5 GeV, where we predict an extremum that is supported by the data. Near threshold we find rapid energy dependence that may reconcile theoretical estimates of small scattering lengths with experimental indications of larger ones based on extrapolation of measurements at moderate kpi^2. In PsV scattering we find that the quark-quark L*S and T forces map into L*S and T meson-meson interactions, and the P-wave L*S force is large. Finally we consider scattering in J^PC-exotic channels, and note that some of the Deck effect mechanisms suggested as possible nonresonant origins of the pi_1(1400) signal are not viable in this model.

Comments: 51 pages, 10 figures, uses epsf.sty epsfig.sty

Citation historyopen in Citation History ↗