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Regularity for eigenfunctions of Schrödinger operators

Published 8 Oct 2010 in math-ph, math.AP, math.FA, math.MP, and math.NA | (1010.1712v3)

Abstract: We prove a regularity result in weighted Sobolev spaces (or Babuska--Kondratiev spaces) for the eigenfunctions of a Schr\"odinger operator. More precisely, let K_{a}{m}(\mathbb{R}{3N}) be the weighted Sobolev space obtained by blowing up the set of singular points of the Coulomb type potential V(x) = \sum_{1 \le j \le N} \frac{b_j}{|x_j|} + \sum_{1 \le i < j \le N} \frac{c_{ij}}{|x_i-x_j|}, x in \mathbb{R}{3N}, b_j, c_{ij} in \mathbb{R}. If u in L2(\mathbb{R}{3N}) satisfies (-\Delta + V) u = \lambda u in distribution sense, then u belongs to K_{a}{m} for all m \in \mathbb{Z}+ and all a \le 0. Our result extends to the case when b_j and c{ij} are suitable bounded functions on the blown-up space. In the single-electron, multi-nuclei case, we obtain the same result for all a<3/2.

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