Multiple vector-valued, mixed norm estimates for Littlewood-Paley square functions

Pub Date : 2018-08-09 DOI:10.5565/publmat6622205
C. Benea, Camil Muscalu
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引用次数: 5

Abstract

We prove that for any $L^Q$-valued Schwartz function $f$ defined on $\mathbb{R}^d$, one has the multiple vector-valued, mixed norm estimate $$ \| f \|_{L^P(L^Q)} \lesssim \| S f \|_{L^P(L^Q)} $$ valid for every $d$-tuple $P$ and every $n$-tuple $Q$ satisfying $0 < P, Q < \infty$ componentwise. Here $S:= S_{d_1}\otimes ... \otimes S_{d_N}$ is a tensor product of several Littlewood-Paley square functions $S_{d_j}$ defined on arbitrary Euclidean spaces $\mathbb{R}^{d_j}$ for $1\leq j\leq N$, with the property that $d_1 + ... + d_N = d$. This answers a question that came up implicitly in our recent works and completes in a natural way classical results of the Littlewood-Paley theory. The proof is based on the \emph{helicoidal method} introduced by the authors.
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Littlewood-Paley平方函数的多向量值混合范数估计
我们证明了对于在$\mathbb{R}^d$上定义的任何$L^Q$值的Schwartz函数$f$,具有多向量值的混合范数估计$$f|_{L^P(L^Q)}\lesssim|Sf|_{L^P)}$$,对于满足$0
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