English

Purely 1-unrectifiable metric spaces and locally flat Lipschitz functions

Metric Geometry 2022-03-16 v2 Functional Analysis

Abstract

We characterize compact metric spaces whose locally flat Lipschitz functions separate points uniformly as exactly those that are purely 1-unrectifiable, resolving a problem of Weaver. We subsequently use this geometric characterization to answer several questions in Lipschitz analysis. Notably, it follows that the Lipschitz-free space F(M)\mathcal{F}(M) over a compact metric space MM is a dual space if and only if MM is purely 1-unrectifiable. Furthermore, we establish a compact determinacy principle for the Radon-Nikod\'ym property (RNP) and deduce that, for any complete metric space MM, pure 1-unrectifiability is actually equivalent to some well-known Banach space properties of F(M)\mathcal{F}(M) such as the RNP and the Schur property. A direct consequence is that any complete, purely 1-unrectifiable metric space isometrically embeds into a Banach space with the RNP. Finally, we provide a possible solution to a problem of Whitney by finding a rectifiability-based description of 1-critical compact metric spaces, and we use this description to prove the following: a bounded turning tree fails to be 1-critical if and only if each of its subarcs has σ\sigma-finite Hausdorff 1-measure.

Keywords

Cite

@article{arxiv.2103.09370,
  title  = {Purely 1-unrectifiable metric spaces and locally flat Lipschitz functions},
  author = {Ramón J. Aliaga and Chris Gartland and Colin Petitjean and Antonín Procházka},
  journal= {arXiv preprint arXiv:2103.09370},
  year   = {2022}
}

Comments

v2: Added Section 1.3 introducing Kirchheim's theorems on rectifiability