Transversal instability for the thermodiffusive reaction-diffusion system

Chinese Annals of Mathematics, Series B - Tập 36 - Trang 871-882 - 2015
Michal Kowalczyk1, Benoît Perthame2,3,4, Nicolas Vauchelet2,3,4
1Departamento de Ingenieria Matemática and Centro de Modelamiento Matemático (UMI CNRS 2807), Universidad de Chile, Santiago, Chile
2UPMC Univ. Paris 06, UMR 7598, Laboratoire Jacques-Louis Lions, Sorbonne Universités, Paris, France
3CNRS, UMR 7598, Laboratoire Jacques-Louis Lions, Paris, France
4INRIA-Paris-Rocquencourt, EPC MAMBA, Domaine de Voluceau, Le Chesnay Cedex, France

Tóm tắt

The propagation of unstable interfaces is at the origin of remarkable patterns that are observed in various areas of science as chemical reactions, phase transitions, and growth of bacterial colonies. Since a scalar equation generates usually stable waves, the simplest mathematical description relies on two-by-two reaction-diffusion systems. The authors’ interest is the extension of the Fisher/KPP equation to a two-species reaction which represents reactant concentration and temperature when used for flame propagation, and bacterial population and nutrient concentration when used in biology. The authors study circumstances in which instabilities can occur and in particular the effect of dimension. It is observed numerically that spherical waves can be unstable depending on the coefficients. A simpler mathematical framework is to study transversal instability, which means a one-dimensional wave propagating in two space dimensions. Then, explicit analytical formulas give explicitely the range of paramaters for instability.

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