English

Counting and boundary limit theorems for representations of Gromov-hyperbolic groups

Dynamical Systems 2022-02-22 v3 Group Theory Probability

Abstract

Given a Gromov-hyperbolic group GG endowed with a finite symmetric generating set, we study the statistics of counting measures on the spheres of the associated Cayley graph under linear representations of GG. More generally, we obtain a weak law of large numbers for subadditive functions, echoing the classical Fekete lemma. For strongly irreducible and proximal representations, we prove a counting central limit theorem with a Berry--Esseen type error rate and exponential large deviation estimates. Moreover, in the same setting, we show convergence of interpolated normalized matrix norms along geodesic rays to Brownian motion and a functional law of iterated logarithm, paralleling the analogous results in the theory of random matrix products. Our counting large deviation estimates provide a positive answer to a question of Kaimanovich--Kapovich--Schupp. In most cases, our counting limit theorems will be obtained from stronger almost sure limit laws for Patterson--Sullivan measures on the boundary of the group.

Keywords

Cite

@article{arxiv.2201.00737,
  title  = {Counting and boundary limit theorems for representations of Gromov-hyperbolic groups},
  author = {Stephen Cantrell and Cagri Sert},
  journal= {arXiv preprint arXiv:2201.00737},
  year   = {2022}
}

Comments

52 pages, no figures, newest version has a extra section (9.2) outlining applications