English

Inhomogeneous potentials, Hausdorff dimension and shrinking targets

Dynamical Systems 2018-10-15 v3 Classical Analysis and ODEs

Abstract

Generalising a construction of Falconer, we consider classes of GδG_\delta-subsets of Rd\mathbb{R}^d with the property that sets belonging to the class have large Hausdorff dimension and the class is closed under countable intersections. We relate these classes to some inhomogeneous potentials and energies, thereby providing some useful tools to determine if a set belongs to one of the classes. As applications of this theory, we calculate, or at least estimate, the Hausdorff dimension of randomly generated limsup-sets, and sets that appear in the setting of shrinking targets in dynamical systems. For instance, we prove that for α1\alpha \geq 1, dimH{y:Tan(x)y<nα infinitely often}=1α, \mathrm{dim}_\mathrm{H}\, \{ \, y : | T_a^n (x) - y| < n^{-\alpha} \text{ infinitely often} \, \} = \frac{1}{\alpha}, for almost every x[1a,1]x \in [1-a,1], where TaT_a is a quadratic map with aa in a set of parameters described by Benedicks and Carleson.

Keywords

Cite

@article{arxiv.1711.04468,
  title  = {Inhomogeneous potentials, Hausdorff dimension and shrinking targets},
  author = {Tomas Persson},
  journal= {arXiv preprint arXiv:1711.04468},
  year   = {2018}
}

Comments

36 pages. Corrected and reorganised following referee's report. Accepted for publication in Annales Henri Lebesgue

R2 v1 2026-06-22T22:43:52.153Z