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February 22, 2024Journal of Spectral Theory2 citationsOpen Access

Counting eigenvalues of Schrödinger operators using the landscape function

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SBSven BachmannRFRichard FroeseSSSeverin Schraven

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Abstract

We prove an upper and a lower bound on the rank of the spectral projections of the Schrödinger operator - + V in terms of the volume of the sublevel sets of an effective potential 1u. Here, u is the ‘landscape function’ of G. David, M. Filoche, and S. Mayboroda Adv. Math. 390 (2021), article no. 107946, namely a solution of (- + V) u = 1 in R^d. We prove the result for non-negative potentials satisfying a Kato-type and a doubling condition, in all spatial dimensions, in infinite volume, and show that no coarse-graining is required. Our result yields in particular a necessary and sufficient condition for discreteness of the spectrum. In the case of nonnegative polynomial potentials, we prove that the spectrum is discrete if and only if no directional derivative vanishes identically.

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Cite This Study

Bachmann et al. (2024) studied this question.

synapsesocial.com/papers/68e780d5b6db6435876f42edhttps://doi.org/10.4171/jst/488
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