English

Scaling in SU(3) Pure Gauge Theory with a Renormalization Group Improved Action

High Energy Physics - Lattice 2016-08-15 v3

Abstract

We study the scaling properties of the static quark potential and the ratio of the critical temperature TcT_c to the square root of the string tension σ\sigma in the SU(3) pure gauge theory using a renormalization group improved action. We first determine the critical coupling βc\beta_c on lattices with temporal extension Nt=3N_t=3, 4, and 6, and then calculate the static quark potential at the critical couplings on lattices at zero temperature. We note that the static quark potentials obtained are rotationally invariant with errors of at most 1 - 2 % in all the three cases, and that the potential V(R)V(R) in physical units scales in the whole region of RR investigated. The values of Tc/σT_{c}/\sqrt{\sigma} for the three cases in the infinite volume limit are identical within errors. We estimate the value in the continuum limit to be Tc/σ=0.656(4)T_{c}/\sqrt{\sigma} = 0.656(4), which is slightly larger than the value in the continuum limit from the one-plaquette action, 0.629(3).

Keywords

Cite

@article{arxiv.hep-lat/9610023,
  title  = {Scaling in SU(3) Pure Gauge Theory with a Renormalization Group Improved Action},
  author = {Y. Iwasaki and K. Kanaya and T. Kaneko and T. Yoshié},
  journal= {arXiv preprint arXiv:hep-lat/9610023},
  year   = {2016}
}

Comments

32 pages of Latex, 13 PostScript figures. Replaced version containing extended finite size scaling analyses on $15^{3}\times3$ and $20^{3}\times4$ lattices