Papers
Topics
Authors
Recent
Gemini 2.5 Flash
Gemini 2.5 Flash
133 tokens/sec
GPT-4o
7 tokens/sec
Gemini 2.5 Pro Pro
46 tokens/sec
o3 Pro
4 tokens/sec
GPT-4.1 Pro
38 tokens/sec
DeepSeek R1 via Azure Pro
28 tokens/sec
2000 character limit reached

Group actions, the Mattila integral and applications (1705.00560v4)

Published 1 May 2017 in math.CA and math.CO

Abstract: The Mattila integral, $$ {\mathcal M}(\mu)=\int {\left( \int_{S{d-1}} {|\widehat{\mu}(r \omega)|}2 d\omega \right)}2 r{d-1} dr,$$ developed by Mattila, is the main tool in the study of the Falconer distance problem. In this paper, with a very simple argument, we develop a generalized version of the Mattila integral. Our first application is to consider the product of distances $$(\Delta(E))k= \left{\prod_{j=1}k |xj-yj|: xj, yj\in E\right} $$ and show that when $d\geq 2$, $(\Delta(E))k$ has positive Lebesgue measure if $\dim_{\mathcal{H}}(E)>\frac{d}{2}+\frac{1}{4k-1}$. Another application is, we prove for any $E,F,H\subset\mathbb{R}2$, $\dim_{\mathcal{H}}(E)+\dim_{\mathcal{H}}(F)+\dim_{\mathcal{H}}(H)>4$, the set $$E\cdot(F+H)={x\cdot(y+z): x\in E, y\in F, z\in H}$$ has positive Lebesgue.

Summary

We haven't generated a summary for this paper yet.