Static Three-Quark Potential in SU(3) Lattice QCD Monte-Carlo Simulation
Abstract
The static three-quark(3Q) potential is investigated in the SU(3) lattice QCD at the quenched level, using the standard Wilson action with and . With the 3Q Wilson loop, the ground-state 3Q potential is calculated for 16 patterns of the 3Q configuration, using the smearing technique, which enhances the ground-state overlap of the 3Q operator. With the accuracy better than a few %, the lattice QCD data for are well described by a sum of the Coulomb term, a constant and the linear term which is proportional to the minimal length of the flux-tube linking the 3 quarks. Our results seem to support the Y-type flux picture rather than -type one. From the comparison of with the - potential, we find the universality of the string tension, as well as the OGE relation on the Coulomb coefficient, .
Cite
@article{arxiv.hep-lat/0304009,
title = {Static Three-Quark Potential in SU(3) Lattice QCD Monte-Carlo Simulation},
author = {T. T. Takahashi and H. Matsufuru and Y. Nemoto and H. Suganuma},
journal= {arXiv preprint arXiv:hep-lat/0304009},
year = {2007}
}
Comments
Proceeding of the TMU-Yale Symposium on ``Dynamics of Gauge Fields'' at Tokyo Metropolitan Univ., Tokyo, December 13-15, 1999. ;2pages, 1figure, 1table