English

Dynamics of vertex-reinforced random walks

Probability 2012-01-18 v4

Abstract

We generalize a result from Volkov [Ann. Probab. 29 (2001) 66--91] and prove that, on a large class of locally finite connected graphs of bounded degree (G,)(G,\sim) and symmetric reinforcement matrices a=(ai,j)i,jGa=(a_{i,j})_{i,j\in G}, the vertex-reinforced random walk (VRRW) eventually localizes with positive probability on subsets which consist of a complete dd-partite subgraph with possible loops plus its outer boundary. We first show that, in general, any stable equilibrium of a linear symmetric replicator dynamics with positive payoffs on a graph GG satisfies the property that its support is a complete dd-partite subgraph of GG with possible loops, for some d1d\ge1. This result is used here for the study of VRRWs, but also applies to other contexts such as evolutionary models in population genetics and game theory. Next we generalize the result of Pemantle [Probab. Theory Related Fields 92 (1992) 117--136] and Bena\"{{\i}}m [Ann. Probab. 25 (1997) 361--392] relating the asymptotic behavior of the VRRW to replicator dynamics. This enables us to conclude that, given any neighborhood of a strictly stable equilibrium with support SS, the following event occurs with positive probability: the walk localizes on SSS\cup\partial S (where S\partial S is the outer boundary of SS) and the density of occupation of the VRRW converges, with polynomial rate, to a strictly stable equilibrium in this neighborhood.

Keywords

Cite

@article{arxiv.0809.2739,
  title  = {Dynamics of vertex-reinforced random walks},
  author = {Michel Benaïm and Pierre Tarrès},
  journal= {arXiv preprint arXiv:0809.2739},
  year   = {2012}
}

Comments

Published in at http://dx.doi.org/10.1214/10-AOP609 the Annals of Probability (http://www.imstat.org/aop/) by the Institute of Mathematical Statistics (http://www.imstat.org)

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