arXiv · 1503.04156
Local Limit Theorem in negative curvature
Abstract
Consider the heat kernel $p(t,x,y)$ on the universal cover $X$ of a Riemannian manifold $M$ of negative curvature. We show the local limit theorem for $p$ : $$\lim_{t \to \infty} t^{3/2}e^{\lambda_0 t} p(t,x,y)=C(x,y),$$ where $\lambda_0$ is the bottom of the spectrum of the geometric Laplacian and $C(x,y)$ is a positive function which depends on $x, y \in X$. We also show that the $\lambda_0$-Martin boundary of $X$ is equal to its topological boundary. The Martin decomposition of $C(x,y)$ gives a family of measures $\{\mu^{\lambda_0}_x \}$ on $\partial \widetilde{M}$. We show that $\{\mu^{\lambda_0}_x \}$ is the unique family minimizing the energy or the Rayleigh quotient of Mohsen. We use the uniform Harnack inequality on the boundary $\partial X$ and the uniform three-mixing of the geodesic flow on the unit tangent bundle $SM$ for suitable Gibbs-Margulis measures.
Explore related subjects
Keep this discovery
François Ledrappier, Seonhee Lim. 2015-03-13. Local Limit Theorem in negative curvature. https://arxiv.org/abs/1503.04156
Cite the original work for its findings. Save a collection to share your selection of sources.