English

Improved Fractal Weyl upper bound in obstacle scattering

Analysis of PDEs 2023-01-27 v1 Mathematical Physics math.MP Spectral Theory

Abstract

In this paper, we are interested in the problem of scattering by strictly convex obstacles in the plane. We provide an upper bound for the number N(r,γ)N(r,\gamma) of resonances in the box {r(λ)r+1\{r \le \Re(\lambda) \le r + 1; (λ)γ}\Im(\lambda) \ge - \gamma \}. It was proved in a work of S. Nonnenmacher, J. Sj{\"o}strand and M. Zworski (2014) that N(r,γ)=Oγ(rdH)N (r,\gamma) = O_\gamma (r^{d_H}) where 2dH+12d_H + 1 is the Hausdorff dimension of the trapped set of the billiard flow. In this article, we provide an improved upper bound in the band 0γ<γcl/20 \le \gamma < \gamma_{cl} /2, where γcl\gamma_{cl} is the classical decay rate of the flow. This improved Weyl upper bound is in the spirit of the ones of F. Naud (2012) and S. Dyatlov (2019) in the case of convex co-compact surfaces, and of S. Dyatlov and L. Jin (2017) in the case of open quantum baker's maps.

Keywords

Cite

@article{arxiv.2301.11077,
  title  = {Improved Fractal Weyl upper bound in obstacle scattering},
  author = {Lucas Vacossin},
  journal= {arXiv preprint arXiv:2301.11077},
  year   = {2023}
}
R2 v1 2026-06-28T08:21:18.288Z