English

Scaling Study of Pure Gauge Lattice QCD by Monte Carlo Renormalization Group Method

High Energy Physics - Lattice 2011-07-19 v1

Abstract

The scaling behavior of pure gauge SU(3) in the region β=5.857.60\beta=5.85 - 7.60 is examined by a Monte Carlo Renormalization Group analysis. The coupling shifts induced by factor 2 blocking are measured both on 324^4 and 164^4 lattices with high statistics. A systematic deviation from naive 2-loop scaling is clearly seen. The mean field and effective coupling constant schemes explain part, but not all of the deviation. It can be accounted for by a suitable change of coupling constant, including a correction term O(g7){\cal O}(g^7) in the 2-loop lattice β\beta-function. Based on this improvement, σ/ΛMSnf=0\sqrt{\sigma}/\Lambda_{\overline {MS}}^{n_f=0} is estimated to be 2.2(±0.1)2.2(\pm 0.1) from the analysis of the string tension σ\sigma.

Keywords

Cite

@article{arxiv.hep-lat/9307004,
  title  = {Scaling Study of Pure Gauge Lattice QCD by Monte Carlo Renormalization Group Method},
  author = {K. Akemi and Ph. deForcrand and M. Fujisaki and T. Hashimoto and H. C. Hege and S. Hioki and O. Miyamura and A. Nakamura and M. Okuda I. O. Stamatescu and Y. Tago and T. Takaishi},
  journal= {arXiv preprint arXiv:hep-lat/9307004},
  year   = {2011}
}

Comments

4 pages of A4 format including 7-postscript figures