arXiv · 1808.04965
A bilinear Bogolyubov-Ruzsa lemma with poly-logarithmic bounds
Abstract
The Bogolyubov-Ruzsa lemma, in particular the quantitative bounds obtained by Sanders, plays a central role in obtaining effective bounds for the inverse $U^3$ theorem for the Gowers norms. Recently, Gowers and Milićević applied a bilinear Bogolyubov-Ruzsa lemma as part of a proof of the inverse $U^4$ theorem with effective bounds. The goal of this note is to obtain quantitative bounds for the bilinear Bogolyubov-Ruzsa lemma which are similar to those obtained by Sanders for the Bogolyubov-Ruzsa lemma. We show that if a set $A \subset \mathbb{F}_p^n \times \mathbb{F}_p^n$ has density $α$, then after a constant number of horizontal and vertical sums, the set $A$ would contain a bilinear structure of co-dimension $r=\log^{O(1)} α^{-1}$. This improves the results of Gowers and Milićević which obtained similar results with a weaker bound of $r=\exp(\exp(\log^{O(1)} α^{-1}))$ and by Bienvenu and Lê which obtained $r=\exp(\exp(\exp(\log^{O(1)} α^{-1})))$.
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Kaave Hosseini, Shachar Lovett. 2019-06-12. A bilinear Bogolyubov-Ruzsa lemma with poly-logarithmic bounds. https://doi.org/10.19086/da.8867
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