Liouville property for groups and conformal dimension
Abstract
Conformal dimension is a fundamental invariant of metric spaces, particularly suited to the study of self-similar spaces, such as spaces with an expanding self-covering (e.g. Julia sets of complex rational functions). The dynamics of these systems are encoded by the associated iterated monodromy groups, which are examples of contracting self-similar groups. Their amenability is a well-known open question. We show that if is an iterated monodromy group, and if the (Alfhors-regular) conformal dimension of the underlying space is strictly less than 2, then every symmetric random walk with finite second moment on has the Liouville property. As a corollary, every such group is amenable. This criterion applies to all examples of contracting groups previously known to be amenable, and to many new ones. In particular, it implies that for every sub-hyperbolic complex rational function whose Julia set is not the whole sphere, the iterated monodromy group of is amenable.
Keywords
Cite
@article{arxiv.2305.14545,
title = {Liouville property for groups and conformal dimension},
author = {Nicolás Matte Bon and Volodymyr Nekrashevych and Tianyi Zheng},
journal= {arXiv preprint arXiv:2305.14545},
year = {2025}
}
Comments
v4: 42 pages, 5 figures, final version