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Autor: =Imbert, Cyril
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Publicación seriada
Referencias AnalíticasReferencias Analíticas
Autor: Alibaud, Nathaël ; Imbert, Cyril
Título: Fractional semi-linear parabolic equations with unbounded data
Páginas/Colación: pp. 2527-2566
Fecha: May 2009
Transactions of the American Mathematical Society Vol. 361, no.5 May 2009
Información de existenciaInformación de existencia

Palabras Claves: Palabras: CONVERGENCE OF GRADIENTS CONVERGENCE OF GRADIENTS, Palabras: FINITE-INFINITE PROPAGATION SPEED FINITE-INFINITE PROPAGATION SPEED, Palabras: FRACTIONAL LAPLACIAN FRACTIONAL LAPLACIAN, Palabras: LÉVY OPERATOR LÉVY OPERATOR, Palabras: NON-LOCAL VANISHING VISCOSITY METHOD NON-LOCAL VANISHING VISCOSITY METHOD, Palabras: REGULARITY REGULARITY, Palabras: SEMI-LINEAR EQUATION SEMI-LINEAR EQUATION, Palabras: UNBOUNDED DATA UNBOUNDED DATA, Palabras: UNBOUNDED SOLUTIONS UNBOUNDED SOLUTIONS, Palabras: VISCOSITY VISCOSITY, Palabras: VISCOSITY SOLUTION VISCOSITY SOLUTION

Resumen
This paper is devoted to the study of semi-linear parabolic equations whose principal term is fractional, i.e. is integral and eventually singular. A typical example is the fractional Laplace operator. This work sheds light on the fact that, if the initial datum is not bounded, assumptions on the non-linearity are closely related to its behaviour at infinity. The sublinear and superlinear cases are first treated by classical techniques. We next present a third original case: if the associated first order Hamilton-Jacobi equation is such that perturbations propagate at finite speed, then the semi-linear parabolic equation somehow keeps memory of this property. By using such a result, locally bounded initial data that are merely integrable at infinity can be handled. Next, regularity of the solution is proved. Eventually, strong convergence of gradients as the fractional term disappears is proved for strictly convex non-linearity.

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

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