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Main Authors: Das, Saumyajit, Hutridurga, Harsha
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2411.09382
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author Das, Saumyajit
Hutridurga, Harsha
author_facet Das, Saumyajit
Hutridurga, Harsha
contents In this article we study a reaction diffusion system with $m$ unknown concentration. The non-linearity in our study comes from an underlying reversible chemical reaction and triangular in nature. Our objective is to understand the large time behaviour of solution where there are degeneracies. In particular we treat those cases when one of the diffusion coefficient is zero and others are strictly positive. We prove convergence to equilibrium type of results under some condition on stoichiometric coefficients in dimension $1$,$2$ and $3$ in correspondence with the existence of classical solution. For dimension greater than 3 we prove similar result under certain closeness condition on the non-zero diffusion coefficients and with the same condition imposed on stoichiometric coefficients. All the constant occurs in the decay estimates are explicit.
format Preprint
id arxiv_https___arxiv_org_abs_2411_09382
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Convergence to equilibrium for a degenerate triangular reaction-diffusion system
Das, Saumyajit
Hutridurga, Harsha
Analysis of PDEs
In this article we study a reaction diffusion system with $m$ unknown concentration. The non-linearity in our study comes from an underlying reversible chemical reaction and triangular in nature. Our objective is to understand the large time behaviour of solution where there are degeneracies. In particular we treat those cases when one of the diffusion coefficient is zero and others are strictly positive. We prove convergence to equilibrium type of results under some condition on stoichiometric coefficients in dimension $1$,$2$ and $3$ in correspondence with the existence of classical solution. For dimension greater than 3 we prove similar result under certain closeness condition on the non-zero diffusion coefficients and with the same condition imposed on stoichiometric coefficients. All the constant occurs in the decay estimates are explicit.
title Convergence to equilibrium for a degenerate triangular reaction-diffusion system
topic Analysis of PDEs
url https://arxiv.org/abs/2411.09382