English

Closed geodesics and Fr{\o}yshov invariants of hyperbolic three-manifolds

Geometric Topology 2021-05-12 v1 Differential Geometry Number Theory

Abstract

Froyshov invariants are numerical invariants of rational homology three-spheres derived from gradings in monopole Floer homology. In the past few years, they have been employed to solve a wide range of problems in three and four-dimensional topology. In this paper, we look at connections with hyperbolic geometry for the class of minimal LL-spaces. In particular, we study relations between Froyshov invariants and closed geodesics using ideas from analytic number theory. We discuss two main applications of our approach. First, we derive effective upper bounds for the Froyshov invariants of minimal hyperbolic LL-spaces purely in terms of volume and injectivity radius. Second, we describe an algorithm to compute Froyshov invariants of minimal LL-spaces in terms of data arising from hyperbolic geometry. As a concrete example of our method, we compute the Froyshov invariants for all spinc^c structures on the Seifert-Weber dodecahedral space. Along the way, we also prove several results about the eta invariants of the odd signature and Dirac operators on hyperbolic three-manifolds which might be of independent interest.

Keywords

Cite

@article{arxiv.2105.04675,
  title  = {Closed geodesics and Fr{\o}yshov invariants of hyperbolic three-manifolds},
  author = {Francesco Lin and Michael Lipnowski},
  journal= {arXiv preprint arXiv:2105.04675},
  year   = {2021}
}

Comments

76 pages, many plots