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The Jones Strong Distribution Banach Spaces

Published 10 Apr 2015 in math.FA, math-ph, math.AP, and math.MP | (1504.02794v1)

Abstract: In this note, we introduce a new class of separable Banach spaces, ${SDp}[{\mathbb{R}n}],\;1 \leqslant p \leqslant \infty$, which contain each $Lp$-space as a dense continuous and compact embedding. They also contain the nonabsolutely integrable functions and the space of test functions ${\mathcal{D}}[{\mathbb{R}n}]$, as dense continuous embeddings. These spaces have the remarkable property that, for any multi-index $\alpha, \; \left| {{D\alpha }{\mathbf{u}}} \right|{SD} = \left| {\mathbf{u}} \right|{SD}$, where $D$ is the distributional derivative. We call them Jones strong distribution Banach spaces because of the crucial role played by two special functions introduced in his book (see \cite{J}, page 249). After constructing the spaces, we discuss their basic properties and their relationship to ${\mathcal{D}}[{\mathbb{R}n}]$ and ${\mathcal{D'}}[{\mathbb{R}n}]$. As an application, we obtain new a priori bounds for the Navier-Stokes equation.

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