Local and global time decay for parabolic equations with super linear first order terms

Fuente: arXiv
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Main Authors: Magliocca, Martina, Porretta, Alessio
Format: Preprint
Published: 2017
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author Magliocca, Martina
Porretta, Alessio
author_facet Magliocca, Martina
Porretta, Alessio
contents We study a class of parabolic equations having first order terms with superlinear (and subquadratic) growth. The model problem is the so-called viscous Hamilton-Jacobi equation with superlinear Hamiltonian. We address the problem of having unbounded initial data and we develop a local theory yielding well-posedness for initial data in the optimal Lebesgue space, depending on the superlinear growth. Then we prove regularizing effects, short and long time decay estimates of the solutions. Compared to previous works, the main novelty is that our results apply to nonlinear operators with just measurable and bounded coefficients, since we totally avoid the use of gradient estimates of higher order. By contrast we only rely on elementary arguments using equi-integrability, contraction principles and truncation methods for weak solutions.
format Preprint
id arxiv_https___arxiv_org_abs_1707_01761
institution arXiv
publishDate 2017
record_format arxiv
spellingShingle Local and global time decay for parabolic equations with super linear first order terms
Magliocca, Martina
Porretta, Alessio
Analysis of PDEs
We study a class of parabolic equations having first order terms with superlinear (and subquadratic) growth. The model problem is the so-called viscous Hamilton-Jacobi equation with superlinear Hamiltonian. We address the problem of having unbounded initial data and we develop a local theory yielding well-posedness for initial data in the optimal Lebesgue space, depending on the superlinear growth. Then we prove regularizing effects, short and long time decay estimates of the solutions. Compared to previous works, the main novelty is that our results apply to nonlinear operators with just measurable and bounded coefficients, since we totally avoid the use of gradient estimates of higher order. By contrast we only rely on elementary arguments using equi-integrability, contraction principles and truncation methods for weak solutions.
title Local and global time decay for parabolic equations with super linear first order terms
topic Analysis of PDEs
url https://arxiv.org/abs/1707.01761