The second eigenvalue of the fractional $p-$Laplacian
Abstract
We consider the eigenvalue problem for the {\it fractional Laplacian} in an open bounded, possibly disconnected set , under homogeneous Dirichlet boundary conditions. After discussing some regularity issues for eigenfuctions, we show that the second eigenvalue is well-defined, and we characterize it by means of several equivalent variational formulations. In particular, we extend the mountain pass characterization of Cuesta, De Figueiredo and Gossez to the nonlocal and nonlinear setting. Finally, we consider the minimization problem We prove that, differently from the local case, an optimal shape does not exist, even among disconnected sets. A minimizing sequence is given by the union of two disjoint balls of volume whose mutual distance tends to infinity.
Keywords
Cite
@article{arxiv.1409.6284,
title = {The second eigenvalue of the fractional $p-$Laplacian},
author = {Lorenzo Brasco and Enea Parini},
journal= {arXiv preprint arXiv:1409.6284},
year = {2016}
}
Comments
38 pages. The test function used in the proof of Theorem 3.1 needed to be slightly modified, in order to be admissible for $1<p<2$. We fixed this issue