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Boundedness And Compactness Of Cauchy-Type Integral Commutator On Weighted Morrey Spaces (2007.10157v1)

Published 20 Jul 2020 in math.CV

Abstract: In this paper we study the boundedness and compactness characterizations of the commutator of Cauchy type integrals $\mathcal C$ on a bounded strongly pseudoconvex domain $D$ in $Cn$ with boundary $bD$ satisfying the minimum regularity condition $C{2}$ based on the recent result of Lanzani-Stein and Duong-Lacey-Li-Wick-Wu. We point out that in this setting the Cauchy type integral $\mathcal C$ is the sum of the essential part $\mathcal{C}\sharp$ which is a Calder\'on-Zygmund operator and a remainder $\mathcal R$ which is no longer a Calder\'on-Zygmund operator. We show that the commutator $[b, \mathcal C]$ is bounded on weighted Morrey space $L_{v}{p,\kappa}(bD)$ ($v\in A_p, 1<p<\infty$) if and only if $b$ is in the BMO space on $bD$. Moreover, the commutator $[b, \mathcal C]$ is compact on weighted Morrey space $L_{v}{p,\kappa}(bD)$ ($v\in A_p, 1<p<\infty$) if and only if $b$ is in the VMO space on $bD$.

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