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Mathematics > Functional Analysis

Title: Relative weak compactness in infinite-dimensional Fefferman-Meyer duality

Abstract: Let $E$ be a Banach space such that $E'$ has the Radon-Nikod\'ym property. The aim of this work is to connect relative weak compactness in the $E$-valued martingale Hardy space $H^{1}(\mu,E)$ to a convex compactness criterion in a weaker topology, such as the topology of uniform convergence on compacts in measure. These results represent a dynamic version of the deep result of Diestel, Ruess, and Schachermayer on relative weak compactness in $L^{1}(\mu,E)$. In the reflexive case, we obtain a Kadec-Pe{\l}czy\'nski dichotomy for $H^{1}(\mu,E)$-bounded sequences, which decomposes a subsequence into a relatively weakly compact part, a pointwise weakly convexly convergent part, and a null part converging to zero uniformly on compacts in measure. As a corollary, we investigate a parameterized version of the vector-valued Koml\'os theorem without the assumption of $H^{1}(\mu,E)$-boundedness.
Subjects: Functional Analysis (math.FA); Probability (math.PR)
MSC classes: 46A50, 46E40, 60G44
Cite as: arXiv:2404.13416 [math.FA]
  (or arXiv:2404.13416v1 [math.FA] for this version)

Submission history

From: Vasily Melnikov [view email]
[v1] Sat, 20 Apr 2024 16:04:42 GMT (20kb)

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