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Maximal Function Characterizations of Variable Hardy Spaces Associated with Non-negative Self-adjoint Operators Satisfying Gaussian Estimates

Published 28 Jan 2016 in math.CA and math.FA | (1601.07615v1)

Abstract: Let $p(\cdot):\ \mathbb Rn\to(0,1]$ be a variable exponent function satisfying the globally $\log$-H\"older continuous condition and $L$ a non-negative self-adjoint operator on $L2(\mathbb Rn)$ whose heat kernels satisfying the Gaussian upper bound estimates. Let $H_L{p(\cdot)}(\mathbb Rn)$ be the variable exponent Hardy space defined via the Lusin area function associated with the heat kernels ${e{-t2L}}_{t\in (0,\infty)}$. In this article, the authors first establish the atomic characterization of $H_L{p(\cdot)}(\mathbb Rn)$; using this, the authors then obtain its non-tangential maximal function characterization which, when $p(\cdot)$ is a constant in $(0,1]$, coincides with a recent result by Song and Yan [Adv. Math. 287 (2016), 463-484] and further induces the radial maximal function characterization of $H_L{p(\cdot)}(\mathbb Rn)$ under an additional assumption that the heat kernels of $L$ have the H\"older regularity.

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