arXiv Analytics

Sign in

arXiv:1502.01306 [math.PR]AbstractReferencesReviewsResources

Percolation on the stationary distributions of the voter model

Balazs Rath, Daniel Valesin

Published 2015-02-04Version 1

The voter model on $\mathbb{Z}^d$ is a particle system that serves as a rough model for changes of opinions among social agents or, alternatively, competition between biological species occupying space. When $d \geq 3$, the set of (extremal) stationary distributions is a family of measures $\mu_\alpha$, for $\alpha$ between 0 and 1. A configuration sampled from $\mu_\alpha$ is a strongly correlated field of 0's and 1's on $\mathbb{Z}^d$ in which the density of 1's is $\alpha$. We consider such a configuration as a site percolation model on $\mathbb{Z}^d$. We prove that if $d \geq 5$, the probability of existence of an infinite percolation cluster of 1's exhibits a phase transition in $\alpha$. If the voter model is allowed to have sufficiently spread-out interactions, we prove the same result for $d \geq 3$.

Related articles: Most relevant | Search more
arXiv:1908.09450 [math.PR] (Published 2019-08-26)
Stationary Distributions for the Voter Model in $d\geq 3$ are Bernoulli Shifts
arXiv:2206.01827 [math.PR] (Published 2022-06-03)
A particle system with mean-field interaction: Large-scale limit of stationary distributions
arXiv:2412.09532 [math.PR] (Published 2024-12-12)
Percolation on the stationary distributions of the voter model with stirring