Resonances on geometrically finite graphs
Spectral Theory
2026-03-30 v1 Combinatorics
Group Theory
Number Theory
Abstract
In analogy with the spectral theory of geometrically finite hyperbolic manifolds, we initiate the study of resonances on geometrically finite (q+1)-regular graphs of groups. We prove the meromorphic continuation of the resolvent of the adjacency operator on such spaces and give a geometric characterization of the resonant states. In contrast to the hyperbolic surfaces setting, geometrically finite graphs have only finitely many resonances and may be computed explicitly, yet exhibit many of the same qualitative phenomena as in the hyperbolic manifolds setting. Particularly interesting examples arise from algebraic curves over finite fields.
Cite
@article{arxiv.2603.26443,
title = {Resonances on geometrically finite graphs},
author = {Christian Arends and Carsten Peterson and Tobias Weich},
journal= {arXiv preprint arXiv:2603.26443},
year = {2026}
}
Comments
51 pages, 14 figures