arXiv · 2608.28917
Pseudorandomness and Diffraction
Abstract
Pseudorandom structures are structures that behave like random ones, without necessarily being random themselves. It is a prominent, and evidently very difficult, conjecture that $$ V(n) = λ\cos \Big( 2 π\Big( x_1 + n x_2 + \frac{n(n-1)}{2} α\Big) \Big) $$ is pseudorandom from a Schrödinger operator perspective in that the Schrödinger operator in $\ell^2(\mathbb{Z})$ with potential $V$ displays Anderson localization, that is, pure point spectrum with exponentially decaying eigenfunctions for almost all parameter values --- the same spectral features as those produced by random potentials. We show that $V$ is pseudorandom in terms of its diffraction properties, that is, the associated diffraction measure is purely absolutely continuous for all $λ\not= 0$, all irrational $α$, and all $x_1,x_2$ --- which is the case as well for the random case. Our result gives further evidence for the conjecture in the Schrödinger case and it elucidates the apparent dual behavior of Schrödinger spectral measures and diffraction measures.
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David Damanik, Nicolae Strungaru. 2026-08-28. Pseudorandomness and Diffraction. https://arxiv.org/abs/2608.28917
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