Blow-up for time-fractional diffusion equations with superlinear convex semilinear terms
Abstract
This article is concerned with a semilinear time-fractional diffusion equation with a superlinear convex semilinear term in a bounded domain with the homogeneous Dirichlet, Neumann, Robin boundary conditions and non-negative and not identically vanishing initial value. The order of the fractional derivative in time is between and , and the elliptic part is with time-independent coefficients. We prove (i) The solution with any initial value blow-up if the eigenvalue of the elliptic operator with the minimum real part is non-positive. (ii) Otherwise, the solution blows up if a weighted -norm of initial value is greater than some critical value give by . We provide upper estimates of the blow-up times. The key is a comparison principle for time-fractional ordinary differential equations.
Keywords
Cite
@article{arxiv.2310.14295,
title = {Blow-up for time-fractional diffusion equations with superlinear convex semilinear terms},
author = {Xinchi Huang and Yikan Liu and Masahiro Yamamoto},
journal= {arXiv preprint arXiv:2310.14295},
year = {2023}
}
Comments
14 pages. arXiv admin note: text overlap with arXiv:2302.12724