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Inner multipliers and Rudin type invariant subspaces

Published 9 Mar 2015 in math.FA and math.OA | (1503.02384v1)

Abstract: Let $\mathcal{E}$ be a Hilbert space and $H2_{\mathcal{E}}(\mathbb{D})$ be the $\mathcal{E}$-valued Hardy space over the unit disc $\mathbb{D}$ in $\mathbb{C}$. The well known Beurling-Lax-Halmos theorem states that every shift invariant subspace of $H2_{\mathcal{E}}(\mathbb{D})$ other than ${0}$ has the form $\Theta H2_{\mathcal{E}_*}(\mathbb{D})$, where $\Theta$ is an operator-valued inner multiplier in $H\infty_{B(\mathcal{E}_*, \mathcal{E})}(\mathbb{D})$ for some Hilbert space $\mathcal{E}*$. In this paper we identify $H2(\mathbb{D}n)$ with $H2(\mathbb{D}{n-1})$-valued Hardy space $H2{H2(\mathbb{D}{n-1})}(\mathbb{D})$ and classify all such inner multiplier $\Theta \in H\infty_{\mathcal{B}(H2(\mathbb{D}{n-1}))}(\mathbb{D})$ for which $\Theta H2_{H2(\mathbb{D}{n-1})}(\mathbb{D})$ is a Rudin type invariant subspace of $H2(\mathbb{D}n)$.

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