Topological Phase Transitions and Holonomies in the Dimer Model
Abstract
We demonstrate that the classical dimer model defined on a toroidal hexagonal lattice acquires holonomy phases in the thermodynamic limit. When all activities are equal the lattice sizes must be considered mod 6 in which case the finite size corrections to the bulk partition function correspond to a massless Dirac Fermion in the presence of a flat connection with nontrivial holonomy. For general bond activities we find that the phase transition in this model is a topological one, where the torus degenerates and its modular parameter becomes real at the critical temperature. We argue that these features are generic to bipartite dimer models and we present a more general lattice whose continuum partition function is that of a massive Dirac Fermion.
Cite
@article{arxiv.0809.2960,
title = {Topological Phase Transitions and Holonomies in the Dimer Model},
author = {Charles Nash and Denjoe O'Connor},
journal= {arXiv preprint arXiv:0809.2960},
year = {2008}
}
Comments
7 pages, 4 figures. Minor corrections with additional figures