Anisotropic lattice QCD studies of penta-quarks and tetra-quarks

Abstract

Anisotropic lattice QCD studies of penta-quarks(5Q) with JP=1/2 and 3/2 are presented at the quenched level together with tetra-quarks(4Q). The standard gauge action at β=5.75 and O(a) improved quark (clover) action with =0.1410(0.010)0.1440 are employed on the anisotropic lattice with the renormalized anisotropy as/at = 4. The ``hybrid boundary condition(HBC)'' is adopted to discriminate a compact resonance state from scattering states. Only massive 5Q states are found for JP=1/2+ and 3/2, which cannot be identified as +(1540). A low-lying 5Q state is found for JP=1/2- at m5Q 1.75 GeV, which however turns out to be an NK scattering state through the HBC analysis. A preliminary result for 4Q states is presented suggesting an existence of a compact 4Q resonance at m4Q 1.1 GeV in the idealized SU(4)f chiral limit.

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