An L-q(L-p)-theory for the time fractional evolution equations with variable coefficients

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초록

We introduce an L-q(L-p)-theory for the semilinear fractional equations of the type Here, alpha is an element of (0, 2), p,q > 1, and partial derivative(alpha)(t) is the Caupto fractional derivative of order alpha. Uniqueness, existence, and L-q(L-p)-estimates of solutions are obtained. The leading coefficients a(ij)(t, x) are assumed to be piecewise continuous in t and uniformly continuous in x. In particular a(ij) (t, x) are allowed to be discontinuous with respect to the time variable. Our approach is based on classical tools in PDE theories such as the Marcinkiewicz interpolation theorem, the Calderon Zygmund theorem, and perturbation arguments. (c) 2016 Elsevier Inc. All rights reserved.

키워드

Fractional diffusion-wave equation; L-q (L-p)-theory; L-p-theory; Caputo fractional derivative; Variable coefficients; ADVECTION-DISPERSION EQUATION; DIFFUSION-WAVE EQUATION; INTEGRODIFFERENTIAL EQUATIONS; ANOMALOUS TRANSPORT; CALCULUS; RELAXATION; REGULARITY; EXISTENCE; DYNAMICS; SPACES
제목
An L-q(L-p)-theory for the time fractional evolution equations with variable coefficients
저자
Kim, Ildoo; Kim, Kyeong-Hun; Lim, Sungbin
DOI
10.1016/j.aim.2016.08.046
발행일
2017-01-14
유형
Article
저널명
Advances in Mathematics
권
306
페이지
123 ~ 176