Explicit spectral gap estimates for the linearized Boltzmann operator modeling reactive gaseous mixtures
Analysis of PDEs
2025-11-27 v2 Mathematical Physics
math.MP
Abstract
We consider hard-potential cutoff multi-species Boltzmann operators modeling microscopic binary elastic collisions and bimolecular reversible chemical reactions inside a gaseous mixture. We prove that the spectral gap estimate derived for the linearized elastic collision operator can be exploited to deduce an explicit negative upper bound for the Dirichlet form of the linearized chemical Boltzmann operator. Such estimate may be used to quantify explicitly the rate of convergence of close-to-equilibrium solutions to the reactive Boltzmann equation toward the global chemical equilibrium of the mixture.
Cite
@article{arxiv.2410.15055,
title = {Explicit spectral gap estimates for the linearized Boltzmann operator modeling reactive gaseous mixtures},
author = {Andrea Bondesan and Bao Quoc Tang},
journal= {arXiv preprint arXiv:2410.15055},
year = {2025}
}