A variation norm Carleson theorem for vector-valued Walsh-Fourier series
arXiv:1209.3383 · doi:10.4171/RMI/804
Abstract
We prove a variation norm Carleson theorem for Walsh-Fourier series of functions with values in a UMD Banach space. Our only hypothesis on the Banach space is that it has finite tile-type, a notion introduced by Hytönen and Lacey. Given q \geq 2 we show that, if the space X has tile-type t for all t>q, then the r-variation of the Walsh-Fourier sums of any function f \in L^p ([0,1) ; X) belongs to L^p, whenever q<r \leq \infty and (r/(q-1))' < p < \infty. We also show that if this conclusion is true for a variant of the variational Carleson operator then the space X necessarily has tile-type t for all t >q. For intermediate spaces, i.e. spaces X= [Y,H]_s which are complex interpolation spaces between some UMD space Y and a Hilbert space H, the tile-type is q=2/s. We show that in this case the variation norm Carleson theorem remains true for all r > q in the larger range p > (2r/q)'.
37 pages, v2: the statements of the size and density lemmas are more flexible, and the proof of the main theorem more streamlined; incorporates referee's reports. To appear in Rev. Mat. Iberoam
References in corpus (7)
- Vector valued inequalities for families of bilinear Hilbert transforms and applications to bi-parameter problems
- The Vector Valued Quartile Operator
- Estimates for compositions of maximal operators with singular integrals
- Pointwise convergence of Walsh--Fourier series of vector-valued functions
- On the growth of vector-valued Fourier series
- Variational bounds for a dyadic model of the bilinear Hilbert transform
- Weighted bounds for variational Walsh-Fourier series
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