The Variable Coefficient Thin Obstacle Problem: Carleman Inequalities
Abstract
In this article we present a new strategy of addressing the (variable coefficient) thin obstacle problem. Our approach is based on a (variable coefficient) Carleman estimate. This yields semi-continuity of the vanishing order, lower and uniform upper growth bounds of solutions and sufficient compactness properties in order to carry out a blow-up procedure. Moreover, the Carleman estimate implies the existence of homogeneous blow-up limits along certain sequences and ultimately leads to an almost optimal regularity statement. As it is a very robust tool, it allows us to consider the problem in the setting of Sobolev metrics, i.e. the coefficients are only regular for some . These results provide the basis for our further analysis of the free boundary, the optimal (-) regularity of solutions and a first order asymptotic expansion of solutions at the regular free boundary which is carried out in a follow-up article in the framework of , , regular coefficients.
Keywords
Cite
@article{arxiv.1501.04496,
title = {The Variable Coefficient Thin Obstacle Problem: Carleman Inequalities},
author = {Herbert Koch and Angkana Rüland and Wenhui Shi},
journal= {arXiv preprint arXiv:1501.04496},
year = {2015}
}
Comments
38 pages, this is a slightly updated version