paper

Critical behavior of 3D Z(N) lattice gauge theories at zero temperature

arXiv:1310.5997 · doi:10.1016/j.nuclphysb.2013.12.003

Abstract

Three-dimensional lattice gauge theories at zero temperature are studied for various values of . Using a modified phenomenological renormalization group, we explore the critical behavior of the generalized model for . Numerical computations are used to simulate vector models for for lattices with linear extension up to . We locate the critical points of phase transitions and establish their scaling with . The values of the critical indices indicate that the models with belong to the universality class of the three-dimensional model. However, the exponent derived from the heat capacity is consistent with the Ising universality class. We discuss a possible resolution of this puzzle. We also demonstrate the existence of a rotationally symmetric region within the ordered phase for all at least in the finite volume.

25 pages, 4 figures, 8 tables

Critical behavior of 3D Z(N) lattice gauge theories at zero temperature · wovepaper