English

The Relevant Scale Parameter in the High Temperature Phase of QCD

High Energy Physics - Phenomenology 2010-11-01 v1 High Energy Physics - Lattice Nuclear Theory

Abstract

We introduce the running coupling constant of QCD in the high temperature phase, g~2(T)\tilde{g}^2(T), through a renormalization scheme where the dimensional reduction is optimal at the one-loop level. We then calculate the relevant scale parameter, ΛT\Lambda_T, which characterizes the running of g~2(T)\tilde{g}^2(T) with TT, using the background field method in the static sector. It is found that ΛT/ΛMS=e(γE+1/22)/(4π)0.148\Lambda_T/\Lambda_{\overline{\text{MS}}} =e^{(\gamma_E+1/22)}/(4\pi)\approx 0.148. We further verify that the coupling g~2(T)\tilde{g}^2(T) is also optimal for lattice perturbative calculations. Our result naturally explains why the high temperature limit of QCD sets in at temperatures as low as a few times the critical temperature. In addition, our ΛT\Lambda_T agrees remarkably well with the scale parameter determined from the lattice measurement of the spatial string tension of the SU(2) gauge theory at high TT.

Keywords

Cite

@article{arxiv.hep-ph/9411293,
  title  = {The Relevant Scale Parameter in the High Temperature Phase of QCD},
  author = {Suzhou Huang and Marcello Lissia},
  journal= {arXiv preprint arXiv:hep-ph/9411293},
  year   = {2010}
}

Comments

13 pages, RevTeX 3.0, no figures. Full postscript version available via anonymous ftp (192.84.132.4) at ftp://risc0.ca.infn.it/pub/private/lissia/infnca-th-94-24.ps