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A Szemeredi-type theorem for subsets of the unit cube (CROSBI ID 286415)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Durcik, Polona ; Kovač, Vjekoslav A Szemeredi-type theorem for subsets of the unit cube // Analysis & PDE, 15 (2022), 2; 507-549. doi: 10.2140/apde.2022.15.507

Podaci o odgovornosti

Durcik, Polona ; Kovač, Vjekoslav

engleski

A Szemeredi-type theorem for subsets of the unit cube

We investigate gaps of n-term arithmetic progressions x, x+y, ..., x+(n-1)y inside a positive measure subset A of the unit cube [0, 1]^d. If lengths of their gaps y are evaluated in the l^p-norm for any p other than 1, 2, ..., n-1, and infinity, and if the dimension d is large enough, then we show that the numbers |y|_p attain all values from an interval, the length of which depends only on n, p, d, and the measure of A. Known counterexamples prevent generalizations of this result to the remaining values of the exponent p. We also give an explicit bound for the length of the aforementioned interval. The proof makes the bound depend on the currently available bounds in Szemeredi's theorem on the integers, which are used as a black box. A key ingredient of the proof are power-type cancellation estimates for operators resembling the multilinear Hilbert transforms. As a byproduct of the approach we obtain a quantitative improvement of the corresponding (previously known) result for side lengths of n-dimensional cubes with vertices lying in a positive measure subset of ([0, 1]^2)^n.

Euclidean Ramsey theory ; arithmetic progression ; density theorem ; multilinear estimate ; singular integral ; oscillatory integral

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nije evidentirano

nije evidentirano

nije evidentirano

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nije evidentirano

Podaci o izdanju

15 (2)

2022.

507-549

objavljeno

1948-206X

10.2140/apde.2022.15.507

Povezanost rada

Matematika

Poveznice