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Better estimates of Hölder thickness of fractals

2023/12/07 by Zoltán Buczolich, Buczolich, Zoltán, Balázs Maga +3
Computer Science · Mathematics · #28A80 #Advanced Topology and Set Theory #Classical Analysis and ODEs (math.CA) #FOS: Mathematics #General Topology (math.GN) #Mathematical Dynamics and Fractals #Primary : 28A78 #Secondary : 26B35 #Topological and Geometric Data Analysis

paper · pdf · doi:10.48550/arxiv.2312.04659

openalex publication_date 2023/12/07 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

Dimensions of level sets of generic continuous functions and generic Hölder functions defined on a fractal F encode information about the geometry, ``the thickness" of F. While in the continuous case this quantity is related to a reasonably tame dimension notion which is called the topological Hausdorff dimension of F, the Hölder case seems to be highly nontrivial. A number of earlier papers attempted to deal with this problem, carrying out investigation in the case of Hausdorff dimension and box dimension. In this paper we continue our study of the Hausdorff dimension of almost every level set of generic 1-Hölder- α functions, denoted by D*( α, F). We substantially improve previous lower and upper bounds on D*( α, Δ), where Δ is the Sierpiński triangle, achieving asymptotically equal bounds as α→ 0+. Using a similar argument, we also give an even stronger lower bound on the generic lower box dimension of level sets. Finally, we construct a connected fractal F on which there is a phase transition of D*( α, F), thus providing the first example exhibiting this behavior.

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