Fermionic Structure of Two-Dimensional Ising Model with Quenched Site Dilution
Abstract
We apply a new anticommuting path integral technique to clarify the fermionic structure of the 2D Ising model with quenched site dilution. In the -replica scheme, the model is explicitly reformulated as a theory of interacting fermions on a lattice. An unusual feature is that the leading term of interaction in the exact lattice theory is of order in fermions, where is the number of replicas. The continuum-limit approximation near for weak dilution produces, however, an effective four-fermion interaction. In particular, this implies the doubled-logarithmic singularity in the specific heat near for weak site dilution. The exact value of the initial slope is also obtained. Keywords: Ising model, site disorder, anticommuting Grassmann variables
Cite
@article{arxiv.cond-mat/9711247,
title = {Fermionic Structure of Two-Dimensional Ising Model with Quenched Site Dilution},
author = {V. N. Plechko},
journal= {arXiv preprint arXiv:cond-mat/9711247},
year = {2009}
}
Comments
LaTeX, 1 + 14 pages, no figures