English

Lattice QCD Study of the Pentaquark Baryons

High Energy Physics - Lattice 2017-08-23 v3

Abstract

We study the spin 12\frac12 hadronic state in quenched lattice QCD to search for a possible S=+1S=+1 pentaquark resonance. Simulations are carried out on 83×248^3\times 24, 103×2410^3\times 24, 123×2412^3\times 24 and 163×2416^3\times 24 lattices at β\beta=5.7 at the quenched level with the standard plaquette gauge action and Wilson quark action. We adopt two independent operators with I=0 and JP=12J^P=\frac12 to construct a 2×22\times 2 correlation matrix. After the diagonalization of the correlation matrix, we successfully obtain the energies of the ground-state and the 1st excited-state in this channel. The volume dependence of the energies suggests the existence of a possible resonance state slightly above the NK threshold in I=0 and JP=12J^P=\frac12^- channel.

Keywords

Cite

@article{arxiv.hep-lat/0410025,
  title  = {Lattice QCD Study of the Pentaquark Baryons},
  author = {T. T. Takahashi and T. Umeda and T. Onogi and T. Kunihiro},
  journal= {arXiv preprint arXiv:hep-lat/0410025},
  year   = {2017}
}

Comments

Talk given at the International Workshop on PENTAQUARK04, SPring-8, Japan, 20-23 July 2004; 7 pages, 3 figures