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arXiv · 1302.6104

H{ö}rmander Functional Calculus for Poisson Estimates

Abstract

The aim of the article is to show a H{ö}rmander spectral multiplier theorem for an operator $A$ whose kernel of the semigroup $\exp(-zA)$ satisfies certain Poisson estimates for complex times $z.$ Here $\exp(-zA)$ acts on $L^p(Ω),\,1 < p < \infty,$ where $Ω$ is a space of homogeneous type with the additional condition that the measure of annuli is controlled. In most of the known H{ö}rmander type theorems in the literature, Gaussian bounds and self-adjointness for the semigroup are needed, whereas here the new feature is that the assumptions are the to some extend weaker Poisson bounds, and $\HI$ calculus in place of self-adjointness. The order of derivation in our H{ö}rmander multiplier result is typically $\frac{d}{2},$ $d$ being the dimension of the space $Ω.$ Moreover the functional calculus resulting from our H{ö}rmander theorem is shown to be $R$-bounded. Finally, the result is applied to some examples.

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BibTeXRIS

Christoph Kriegler. 2018-10-24. H{ö}rmander Functional Calculus for Poisson Estimates. https://arxiv.org/abs/1302.6104

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