arXiv:1512.05833·v2·High Energy Physics — Theory
More on the non-perturbative Gribov-Zwanziger quantization of linear covariant gauges
M. A. L. Capri🇧🇷 · D. Dudal🇧🇪 · D. Fiorentini🇧🇷 · M. S. Guimaraes🇧🇷 · I. F. Justo🇧🇪 · B. W. Mintz🇧🇷 · L. F. Palhares🇧🇷 · A. D. Pereira🇮🇹 · R. F. Sobreiro🇧🇷 · S. P. Sorella🇧🇷
Abstract
In this paper, we discuss the gluon propagator in the linear covariant gauges in Euclidean dimensions. Non-perturbative effects are taken into account via the so-called Refined Gribov-Zwanziger framework. We point out that, as in the Landau and maximal Abelian gauges, for , the gluon propagator displays a massive (decoupling) behaviour, while for , a scaling one emerges. All results are discussed in a setup that respects the Becchi-Rouet-Stora-Tyutin (BRST) symmetry, through a recently introduced non-perturbative BRST transformation. We also propose a minimizing functional that could be used to construct a lattice version of our non-perturbative definition of the linear covariant gauge.
Comments: 15 pages, 1 figure; V2 typos fixed and inclusion of section on the ghost propagator. To appear in PhysRev D