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The L^p-to-L^q boundedness of commutators with applications to the Jacobian operator

Published 30 Apr 2018 in math.CA, math.AP, and math.FA | (1804.11167v4)

Abstract: Supplying the missing necessary conditions, we complete the characterisation of the $Lp\to Lq$ boundedness of commutators $[b,T]$ of pointwise multiplication and Calder\'on-Zygmund operators, for arbitrary pairs of $1<p,q<\infty$ and under minimal non-degeneracy hypotheses on $T$. For $p\leq q$ (and especially $p=q$), this extends a long line of results under more restrictive assumptions on $T$. In particular, we answer a recent question of Lerner, Ombrosi, and Rivera-R\'ios by showing that $b\in BMO$ is necessary for the $L^p$-boundedness of $[b,T]$ for any non-zero homogeneous singular integral $T$. We also deal with iterated commutators and weighted spaces. For $p>q$, our results are new even for special classical operators with smooth kernels. As an application, we show that every $f\in Lp(Rd)$ can be represented as a convergent series of normalised Jacobians $Ju=\det\nabla u$ of $u\in \dot W{1,dp}(Rd)d$. This extends, from $p=1$ to $p>1$, a result of Coifman, Lions, Meyer and Semmes about $J:\dot W{1,d}(Rd)d\to H1(Rd)$, and supports a conjecture of Iwaniec about the solvability of the equation $Ju=f\in Lp(Rd)$.

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