English

Asymptotic spreading of KPP reactive fronts in heterogeneous shifting environments

Analysis of PDEs 2021-01-22 v2

Abstract

We study the asymptotic spreading of Kolmogorov-Petrovsky-Piskunov (KPP) fronts in heterogeneous shifting habitats, with any number of shifting speeds, by further developing the method based on the theory of viscosity solutions of Hamilton-Jacobi equations. Our framework addresses both reaction-diffusion equation and integro-differential equations with a distributed time-delay. The latter leads to a class of limiting equations of Hamilton-Jacobi-type depending on the variable x/tx/t and in which the time and space derivatives are coupled together. We will first establish uniqueness results for these Hamilton-Jacobi equations using elementary arguments, and then characterize the spreading speed in terms of a reduced equation on a one-dimensional domain in the variable s=x/ts=x/t. In terms of the standard Fisher-KPP equation, our results leads to a new class of "asymptotically homogeneous" environments which share the same spreading speed with the corresponding homogeneous environments.

Keywords

Cite

@article{arxiv.2101.06698,
  title  = {Asymptotic spreading of KPP reactive fronts in heterogeneous shifting environments},
  author = {King-Yeung Lam and Xiao Yu},
  journal= {arXiv preprint arXiv:2101.06698},
  year   = {2021}
}