English

Multilinear operator-valued Calder\'on-Zygmund theory

Classical Analysis and ODEs 2020-06-02 v2 Functional Analysis

Abstract

We develop a general theory of multilinear singular integrals with operator-valued kernels, acting on tuples of UMD Banach spaces. This, in particular, involves investigating multilinear variants of the R\mathcal R-boundedness condition naturally arising in operator-valued theory. We proceed by establishing a suitable representation of multilinear, operator-valued singular integrals in terms of operator-valued dyadic shifts and paraproducts, and studying the boundedness of these model operators via dyadic-probabilistic Banach space-valued analysis. In the bilinear case, we obtain a T(1)T(1)-type theorem without any additional assumptions on the Banach spaces other than the necessary UMD. Higher degrees of multilinearity are tackled via a new formulation of the Rademacher maximal function (RMF) condition. In addition to the natural UMD lattice cases, our RMF condition covers suitable tuples of non-commutative LpL^p-spaces. We employ our operator-valued theory to obtain new multilinear, multi-parameter, operator-valued theorems in the natural setting of UMD spaces with property α\alpha.

Keywords

Cite

@article{arxiv.1908.07233,
  title  = {Multilinear operator-valued Calder\'on-Zygmund theory},
  author = {Francesco Di Plinio and Kangwei Li and Henri Martikainen and Emil Vuorinen},
  journal= {arXiv preprint arXiv:1908.07233},
  year   = {2020}
}

Comments

v2: incorporated referee comments, to appear in J. Funct. Anal., 52 pages

R2 v1 2026-06-23T10:51:54.589Z