English

Local eigenvalue statistics of one-dimensional random non-selfadjoint pseudo-differential operators

Spectral Theory 2022-01-19 v2 Mathematical Physics Analysis of PDEs math.MP Probability

Abstract

We consider a class of one-dimensional nonselfadjoint semiclassical pseudo-differential operators, subject to small random perturbations, and study the statistical properties of their (discrete) spectra, in the semiclassical limit h0h\to 0. We compare two types of random perturbation: a random potential vs. a random matrix. Hager and Sj\"ostrand had shown that, with high probability, the local spectral density of the perturbed operator follows a semiclassical form of Weyl's law, depending on the value distribution of the principal symbol of our pseudodifferential operator. Beyond the spectral density, we investigate the full local statistics of the perturbed spectrum, and show that it satisfies a form of universality: the statistical only depends on the local spectral density, and of the type of random perturbation, but it is independent of the precise law of the perturbation. This local statistics can be described in terms of the Gaussian Analytic Function, a classical ensemble of random entire functions.

Keywords

Cite

@article{arxiv.1711.05850,
  title  = {Local eigenvalue statistics of one-dimensional random non-selfadjoint pseudo-differential operators},
  author = {Stéphane Nonnenmacher and Martin Vogel},
  journal= {arXiv preprint arXiv:1711.05850},
  year   = {2022}
}

Comments

81 pages, 7 figures

R2 v1 2026-06-22T22:47:33.516Z