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Eigenvalue bounds for non-self-adjoint Schrödinger operators with the inverse-square potential

Published 6 Jul 2016 in math.SP, math-ph, math.AP, and math.MP | (1607.01727v2)

Abstract: The purpose of this paper is to study spectral properties of non-self-adjoint Schr\"odinger operators $-\Delta-\frac{(n-2)2}{4|x|{2}}+V$ on $\mathbb{R}n$ with complex-valued potentials $V\in L{p,\infty}$, $p>n/2$. We prove Keller type inequalities which measure the radius of a disc containing the discrete spectrum, in terms of the $L{p,\infty}$ norm of $V$. Similar inequalities also hold if the inverse-square potential is replaced by a large class of subcritical potentials with critical singularities at the origin. The main new ingredient in the proof is the uniform Sobolev inequality of Kenig-Ruiz-Sogge type for Schr\"odinger operators with strongly singular potentials, which is of independent interest.

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