English

Phase transitions in abelian lattice gauge theories

High Energy Physics - Lattice 2008-02-03 v2

Abstract

We study the phase transition in the abelian lattice gauge theory using the Wilson-Polyakov line as the order parameter. The Wilson-Polyakov line remains very small at strong coupling and becomes non-zero at weak coupling, signalling a confinement to deconfinement phase transition. The decondensation of monopole loops is responsible for this phase transition. A finite size scaling analysis of the susceptibility of the Wilson line gives a ratio for γ/ν\gamma/\nu which is quite close to the corresponding value in the 3-d planar model. A scaling behaviour for the monopole loop distribution function is also established at the point of the second order phase transition. A measurement of the plaquette susceptibility at the transition point shows that it does not scale with the four dimensional volume as is expected of a first order bulk transition.

Keywords

Cite

@article{arxiv.hep-lat/9705041,
  title  = {Phase transitions in abelian lattice gauge theories},
  author = {Srinath Cheluvaraja},
  journal= {arXiv preprint arXiv:hep-lat/9705041},
  year   = {2008}
}

Comments

17 pages in LaTeX with eight figures. The manuscript has been substantially revised and some more results are included