English

Recurrence of Markov chain traces

Probability 2019-02-15 v4

Abstract

It is shown that transient graphs for the simple random walk do not admit a nearest neighbor transient Markov chain (not necessarily a reversible one), that crosses all edges with positive probability, while there is such chain for the square grid Z2\mathbb{Z}^2. In particular, the dd-dimensional grid Zd\mathbb{Z}^d admits such a Markov chain only when d=2d=2. For d=2d=2 we present a relevant example due to Gady Kozma, while the general statement for transient graphs is obtained by proving that for every transient irreducible Markov chain on a countable state space, which admits a stationary measure, its trace is a.s. recurrent for simple random walk. The case that the Markov chain is reversible is due to Gurel-Gurevich, Lyons and the first named author (2007). We exploit recent results in potential theory of non-reversible Markov chains in order to extend their result to the non-reversible setup.

Keywords

Cite

@article{arxiv.1711.03479,
  title  = {Recurrence of Markov chain traces},
  author = {Itai Benjamini and Jonathan Hermon},
  journal= {arXiv preprint arXiv:1711.03479},
  year   = {2019}
}

Comments

35 pages

R2 v1 2026-06-22T22:41:14.589Z