English

Strong coupling expansion for Yang-Mills theory at finite temperature

High Energy Physics - Lattice 2010-12-23 v2

Abstract

Euclidean strong coupling expansion of the partition function is applied to lattice Yang-Mills theory at finite temperature, i.e. for lattices with a compactified temporal direction. The expansions have a finite radius of convergence and thus are valid only for β<βc\beta<\beta_c, where βc\beta_c denotes the nearest singularity of the free energy on the real axis. The accessible temperature range is thus the confined regime up to the deconfinement transition. We have calculated the first few orders of these expansions of the free energy density as well as the screening masses for the gauge groups SU(2) and SU(3). The resulting free energy series can be summed up and corresponds to a glueball gas of the lowest mass glueballs up to the calculated order. Our result can be used to fix the lower integration constant for Monte Carlo calculations of the thermodynamic pressure via the integral method, and shows from first principles that in the confined phase this constant is indeed exponentially small. Similarly, our results also explain the weak temperature dependence of glueball screening masses below TcT_c, as observed in Monte Carlo simulations. Possibilities and difficulties in extracting βc\beta_c from the series are discussed.

Keywords

Cite

@article{arxiv.0710.0512,
  title  = {Strong coupling expansion for Yang-Mills theory at finite temperature},
  author = {J. Langelage and G. Münster and O. Philipsen},
  journal= {arXiv preprint arXiv:0710.0512},
  year   = {2010}
}

Comments

7 pages, 3 figures, 1 tables, corrected typos

R2 v1 2026-06-21T09:25:15.338Z