paper

Lattice QCD Evidence for Exotic Tetraquark Resonance

arXiv:hep-lat/0509121

Abstract

We study the manifestly exotic tetraquark D and the scalar tetraquark in SU(3) anisotropic quenched lattice QCD with the -improved Wilson (clover) fermion with various quark masses including the idealized SU(4) case. For etc., we only consider connected diagrams at the quenched level, i.e., the tetraquark is identical with D in the idealized SU(4) case. First, for comparison, we study the lowest scalar meson, and find that it has a large mass of about 1.37GeV after chiral extrapolation, which corresponds to . Second, we investigate the lowest 4Q state in the spatial periodic boundary condition, and find that it is just a scattering state of two pseudoscalar mesons, as is expected. Third, to extract spatially-localized 4Q resonances, we use the Hybrid Boundary Condition (HBC) method, where anti-periodic and periodic boundary conditions are imposed on quarks (,) and antiquarks (,), respectively. By applying the HBC on a finite-volume lattice, the threshold of the two-meson scattering state is raised up, while the mass of a compact 4Q resonance is almost unchanged. In HBC, we find a nontrivial 4Q resonance state about 100 MeV below the two-meson threshold in some quark-mass region. Its chiral behavior largely differs from a two-meson scattering state. The scalar tetraquark is found to have the mass of about 1.1GeV after chiral extrapolation, and seems to correspond to . Then, the manifestly exotic tetraquark D would exist around 1GeV in the idealized SU(4) chiral limit. Finally, MEM analysis is applied to obtain the spectral function of the 4Q system.

Proceedings of Lattice 2005: XXIIIrd International Symposium on Lattice Field Theory, 25-30 July 2005, Trinity College, Dublin, Ireland