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Autori principali: Bonilla, Antonio, Cardeccia, Rodrigo, Grosse-Erdmann, Karl-G., Muro, Santiago
Natura: Preprint
Pubblicazione: 2020
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Accesso online:https://arxiv.org/abs/2007.01641
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author Bonilla, Antonio
Cardeccia, Rodrigo
Grosse-Erdmann, Karl-G.
Muro, Santiago
author_facet Bonilla, Antonio
Cardeccia, Rodrigo
Grosse-Erdmann, Karl-G.
Muro, Santiago
contents Chan and Seceleanu have shown that if a weighted shift operator on $\ell^p(\mathbb{Z})$, $1\leq p<\infty$, admits an orbit with a non-zero limit point then it is hypercyclic. We present a new proof of this result that allows to extend it to very general sequence spaces. In a similar vein we show that, in many sequence spaces, a weighted shift with a non-zero weakly sequentially recurrent vector has a dense set of such vectors; but an example on $c_0(\mathbb{Z})$ shows that such an operator is not necessarily hypercyclic. On the other hand, we obtain that weakly sequentially hypercyclic weighted shifts are hypercyclic. Chan and Seceleanu have moreover shown that if an adjoint multiplication operator on a Bergman space admits an orbit with a non-zero limit point then it is hypercyclic. We extend this result to very general spaces of analytic functions, including the Hardy spaces.
format Preprint
id arxiv_https___arxiv_org_abs_2007_01641
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Zero-one law of orbital limit points for weighted shifts
Bonilla, Antonio
Cardeccia, Rodrigo
Grosse-Erdmann, Karl-G.
Muro, Santiago
Functional Analysis
primary: 47A16, secondary: 46B45, 47B37, 47B91
Chan and Seceleanu have shown that if a weighted shift operator on $\ell^p(\mathbb{Z})$, $1\leq p<\infty$, admits an orbit with a non-zero limit point then it is hypercyclic. We present a new proof of this result that allows to extend it to very general sequence spaces. In a similar vein we show that, in many sequence spaces, a weighted shift with a non-zero weakly sequentially recurrent vector has a dense set of such vectors; but an example on $c_0(\mathbb{Z})$ shows that such an operator is not necessarily hypercyclic. On the other hand, we obtain that weakly sequentially hypercyclic weighted shifts are hypercyclic. Chan and Seceleanu have moreover shown that if an adjoint multiplication operator on a Bergman space admits an orbit with a non-zero limit point then it is hypercyclic. We extend this result to very general spaces of analytic functions, including the Hardy spaces.
title Zero-one law of orbital limit points for weighted shifts
topic Functional Analysis
primary: 47A16, secondary: 46B45, 47B37, 47B91
url https://arxiv.org/abs/2007.01641