Rectifiability of pointwise doubling measures in Hilbert Space
Abstract
In geometric measure theory, there is interest in studying the interaction of measures with rectifiable sets. Here, we extend a theorem of Badger and Schul in Euclidean space to characterize rectifiable pointwise doubling measures in Hilbert space. Given a measure , we construct a multiresolution family of windows, and then we use a weighted Jones' function to record how well lines approximate the distribution of mass in each window. We show that when is rectifiable, the mass is sufficiently concentrated around a lines at each scale and that the converse also holds. Additionally, we present an algorithm for the construction of a rectifiable curve using appropriately chosen -nets. Throughout, we discuss how to overcome the fact that in infinite dimensional Hilbert space there may be infinitely many -separated points, even in a bounded set. Finally, we prove a characterization for pointwise doubling measures carried by Lipschitz graphs.
Keywords
Cite
@article{arxiv.2002.07570,
title = {Rectifiability of pointwise doubling measures in Hilbert Space},
author = {Lisa Naples},
journal= {arXiv preprint arXiv:2002.07570},
year = {2020}
}