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A note on well-posedness of semilinear reaction-diffusion problem with singular initial data

Published 24 Mar 2011 in math.AP | (1103.4796v1)

Abstract: We discuss conditions for well-posedness of the scalar reaction-diffusion equation $u_{t}=\Delta u+f(u)$ equipped with Dirichlet boundary conditions where the initial data is unbounded. Standard growth conditions are juxtaposed with the no-blow-up condition $\int_{1}{\infty}1/f(s) \d s=\infty$ that guarantees global solutions for the related ODE $\dot u=f(u)$. We investigate well-posedness of the toy PDE $u_{t}=f(u)$ in $L{p}$ under this no-blow-up condition. An example is given of a source term $f$ and an initial condition $\psi\in L{2}(0,1)$ such that $\int_{1}{\infty}1/f(s)\d s=\infty$ and the toy PDE blows-up instantaneously while the reaction-diffusion equation is globally well-posed in $L{2}(0,1)$.

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