Self-similar asymptotic behavior for the solutions of a linear coagulation equation
Abstract
In this paper we consider the long time asymptotics of a linear version of the Smoluchowski equation which describes the evolution of a tagged particle moving at constant speed in a random distribution of fixed particles. The volumes of the particles are independently distributed according to a probability distribution which decays asymptotically as a power law . The validity of the equation has been rigorously proved in \cite{NoV} for values of the exponent . The solutions of this equation display a rich structure of different asymptotic behaviours according to the different values of the exponent . Here we show that for the linear Smoluchowski equation is well posed and that there exists a unique self-similar profile which is asymptotically stable.
Keywords
Cite
@article{arxiv.1804.08886,
title = {Self-similar asymptotic behavior for the solutions of a linear coagulation equation},
author = {Barbara Niethammer and Alessia Nota and Sebastian Throm and Juan J. L. Velázquez},
journal= {arXiv preprint arXiv:1804.08886},
year = {2018}
}
Comments
53 pages, 4 figures