Propagator norm and sharp decay estimates for Fokker-Planck equations with linear drift
Abstract
We are concerned with the short- and large-time behavior of the -propagator norm of Fokker-Planck equations with linear drift, i.e. . With a coordinate transformation these equations can be normalized such that the diffusion and drift matrices are linked as , the symmetric part of . The main result of this paper (Theorem 3.4) is the connection between normalized Fokker-Planck equations and their drift-ODE : Their -propagator norms actually coincide. This implies that optimal decay estimates on the drift-ODE (w.r.t. both the maximum exponential decay rate and the minimum multiplicative constant) carry over to sharp exponential decay estimates of the Fokker-Planck solution towards the steady state. A second application of the theorem regards the short time behaviour of the solution: The short time regularization (in some weighted Sobolev space) is determined by its hypocoercivity index, which has recently been introduced for Fokker-Planck equations and ODEs (see [5, 1, 2]). In the proof we realize that the evolution in each invariant spectral subspace can be represented as an explicitly given, tensored version of the corresponding drift-ODE. In fact, the Fokker-Planck equation can even be considered as the second quantization of .
Keywords
Cite
@article{arxiv.2003.01405,
title = {Propagator norm and sharp decay estimates for Fokker-Planck equations with linear drift},
author = {Anton Arnold and Christian Schmeiser and Beatrice Signorello},
journal= {arXiv preprint arXiv:2003.01405},
year = {2021}
}
Comments
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