English

Hermite polynomials, linear flows on the torus, and an uncertainty principle for roots

Classical Analysis and ODEs 2016-07-26 v2

Abstract

We study a recent result of Bourgain, Clozel and Kahane, a version of which states that a sufficiently nice function f:RRf:\mathbb{R} \rightarrow \mathbb{R} that coincides with its Fourier transform and vanishes at the origin has a root in the interval (c,)(c, \infty), where the optimal cc satisfies 0.41c0.640.41 \leq c \leq 0.64. A similar result holds in higher dimensions. We improve the one-dimensional result to 0.45c0.5940.45 \leq c \leq 0.594, and the lower bound in higher dimensions. We also prove that extremizers exist, and have infinitely many double roots. With this purpose in mind, we establish a new structure statement about Hermite polynomials which relates their pointwise evaluation to linear flows on the torus, and applies to other families of orthogonal polynomials as well.

Keywords

Cite

@article{arxiv.1602.03366,
  title  = {Hermite polynomials, linear flows on the torus, and an uncertainty principle for roots},
  author = {Felipe Gonçalves and Diogo Oliveira e Silva and Stefan Steinerberger},
  journal= {arXiv preprint arXiv:1602.03366},
  year   = {2016}
}

Comments

26 pages, 4 figures