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On the multiparameter Falconer distance problem

Published 15 Jun 2021 in math.CA | (2106.07897v2)

Abstract: We study an extension of the Falconer distance problem in the multiparameter setting. Given $\ell\geq 1$ and $\mathbb{R}{d}=\mathbb{R}{d_1}\times\cdots \times\mathbb{R}{d_\ell}$, $d_i\geq 2$. For any compact set $E\subset \mathbb{R}{d}$ with Hausdorff dimension larger than $d-\frac{\min(d_i)}{2}+\frac{1}{4}$ if $\min(d_i) $ is even, $d-\frac{\min(d_i)}{2}+\frac{1}{4}+\frac{1}{4\min(d_i)}$ if $\min(d_i) $ is odd, we prove that the multiparameter distance set of $E$ has positive $\ell$-dimensional Lebesgue measure. A key ingredient in the proof is a new multiparameter radial projection theorem for fractal measures.

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