English

Gluon condensation and scaling exponents for the propagators in Yang-Mills theory

High Energy Physics - Phenomenology 2011-03-22 v2 High Energy Physics - Theory

Abstract

We investigate the infrared (strong-coupling) regime of SU(N)-Yang-Mills theory on a self-dual background. We present an evaluation of the full effective potential for the field strength invariant F_{\mu {\nu}}F^{\mu {\nu}} from non-perturbative gauge correlation functions and find a non-trivial minimum corresponding to the existence of a dimension four gluon condensate in the vacuum. We also relate the infrared asymptotic form of the beta function of the running background-gauge coupling to the asymptotic behavior of Landau-gauge gluon and ghost propagators. Consistency between both gauges in the infrared imposes a new upper bound on the infrared exponents of the propagators. For the scaling solution, this bound reads kappa_c < 23/38 which, together with Zwanziger's horizon condition kappa_c> 1/2, defines a rather narrow window for this critical exponent. Current estimates from functional methods indeed satisfy these bounds.

Keywords

Cite

@article{arxiv.1010.2153,
  title  = {Gluon condensation and scaling exponents for the propagators in Yang-Mills theory},
  author = {Astrid Eichhorn and Holger Gies and Jan M. Pawlowski},
  journal= {arXiv preprint arXiv:1010.2153},
  year   = {2011}
}

Comments

v2 matches published version, refs added, improved estimate of the gluon condensate