A General Coupling for Ising Models and Beyond
Abstract
The couplings between the Ising model and its graphical representations, the random-cluster, random current and loop models, are put on common footing through a generalization of the Swendsen-Wang-Edwards-Sokal coupling. A new special case is that the single random current with parameter on edges of agreement of XOR-Ising spins has the law of the double random current. The coupling also yields a general mechanism for constructing conditional Bernoulli percolation measures via uniform sampling, providing new perspectives on models such as the arboreal gas, random -regular graphs, and self-avoiding walks. As an application of the coupling for the Loop-Cluster joint model, we prove that the regime of exponential decay of the -state Potts model, the random-cluster representation, and its -flow loop representation coincides on the torus, generalizing the Ising result. Finally, the Loop-Cluster coupling is generalized to lattice gauge theories.
Keywords
Cite
@article{arxiv.2506.10765,
title = {A General Coupling for Ising Models and Beyond},
author = {Ulrik Thinggaard Hansen and Jianping Jiang and Frederik Ravn Klausen},
journal= {arXiv preprint arXiv:2506.10765},
year = {2025}
}