English

Three-quark ground-state potential in the SU(3) lattice QCD

High Energy Physics - Lattice 2007-05-23 v1

Abstract

With the smearing technique, the three-quark (3Q) ground-state potential V3QV_{\rm 3Q} is numerically extracted in the SU(3)c_c lattice QCD Monte Carlo simulation with 123×2412^3 \times 24 and β=5.7\beta=5.7 at the quenched level. With accuracy better than a few %, V3QV_{\rm 3Q} is well described by a sum of a constant C3QC_{\rm 3Q}, the two-body Coulomb part A3Qi<j1rirj-A_{\rm 3Q}\sum_{i<j} \frac1{|{\bf r}_i-{\bf r}_j|} and the three-body linear confinement part σ3QLmin\sigma_{\rm 3Q} L_{\rm min}, where LminL_{\rm min} denotes the minimal length of the color flux tube linking the three quarks. By comparing with the Q-Qˉ\bar {\rm Q} potential, we find a universal feature of the string tension as σ3QσQQˉ\sigma_{\rm 3Q} \simeq \sigma_{\rm Q \bar Q} and the one-gluon-exchange result for the Coulomb coefficient as A3Q12AQQˉA_{\rm 3Q} \simeq \frac12 A_{\rm Q \bar Q}. All our results including the constant term are consistent with the requirement on the diquark limit in the lattice regularization.

Keywords

Cite

@article{arxiv.hep-lat/0205029,
  title  = {Three-quark ground-state potential in the SU(3) lattice QCD},
  author = {H. Suganuma and H. Matsufuru and Y. Nemoto and T. T. Takahashi},
  journal= {arXiv preprint arXiv:hep-lat/0205029},
  year   = {2007}
}

Comments

5 pages, 2 figures, 2 tables