English

Infrared behavior of gluon and ghost propagators from asymmetric lattices

High Energy Physics - Lattice 2011-07-19 v2

Abstract

We present a numerical study of the lattice Landau gluon and ghost propagators in three-dimensional pure SU(2) gauge theory. Data have been obtained using asymmetric lattices (V = 20^2 X 40, 20^2 X 60, 8^2 X 64, 8^2 X 140, 12^2 X 140 and 16^2 X 140) for the lattice coupling beta = 3.4, in the scaling region. We find that the gluon (respectively ghost) propagator is suppressed (respec. enhanced) at small momenta in the limit of large lattice volume V. By comparing these results with data obtained using symmetric lattices (V = 60^3 and 140^3), we find that both propagators suffer from systematic effects in the infrared region (p \lesssim 650 MeV). In particular, the gluon (respec. ghost) propagator is less IR-suppressed (respec. enhanced) than in the symmetric case. We discuss possible implications of the use of asymmetric lattices.

Keywords

Cite

@article{arxiv.hep-lat/0602012,
  title  = {Infrared behavior of gluon and ghost propagators from asymmetric lattices},
  author = {Attilio Cucchieri and Tereza Mendes},
  journal= {arXiv preprint arXiv:hep-lat/0602012},
  year   = {2011}
}

Comments

6 pages, 6 figures and 3 tables; included some results on Gribov-copy effects; modified the introduction