
arXiv: 2001.00852
In this work we study global well-posedness and large time behaviour for a typical reaction--diffusion system, which include degenerate diffusion, and whose non-linearities arise from chemical reactions. We show that there is an {\it indirect diffusion effect}, i.e. an effective diffusion for the non-diffusive species which is incurred by a combination of diffusion from diffusive species and reversible reactions between the species. Deriving new estimates for such degenerate reaction-diffusion system, we show, by applying the entropy method, that the solution converges exponentially to equilibrium, and provide explicit convergence rates and associated constants.
Some typos are corrected
entropy method, degeneracies, Asymptotic behavior of solutions to PDEs, PDEs in connection with biology, chemistry and other natural sciences, Degenerate parabolic equations, long-time behavior, Mathematics - Analysis of PDEs, Reaction-diffusion equations, well-posedness, FOS: Mathematics, Functional inequalities, including subadditivity, convexity, etc., Classical flows, reactions, etc. in chemistry, Analysis of PDEs (math.AP)
entropy method, degeneracies, Asymptotic behavior of solutions to PDEs, PDEs in connection with biology, chemistry and other natural sciences, Degenerate parabolic equations, long-time behavior, Mathematics - Analysis of PDEs, Reaction-diffusion equations, well-posedness, FOS: Mathematics, Functional inequalities, including subadditivity, convexity, etc., Classical flows, reactions, etc. in chemistry, Analysis of PDEs (math.AP)
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