Sensitivity, transitivity and chaos in non-autonomous discrete systems

Fuente: arXiv
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Main Author: Zeng, Hongbo
Format: Preprint
Published: 2024
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author Zeng, Hongbo
author_facet Zeng, Hongbo
contents In this paper, we study properties of sensitivity, transitivity and chaos for non-autonomous discrete systems(NDS). Firstly, we present some different sufficient conditions for NDS to be chaotic. Then, we relate the transitivity with the sensitivity of NDS and give several sufficient conditions for NDS to be sensitive. We obtain that transitivity and dense periodic points imply sensitivity, and that transitive system is either sensitive or almost equicontinuous. The results improve and extend some existing ones. Besides, we give some examples to show that there is a significant difference between the theory of ADS and the theory of NDS. We get that almost periodic point and minimal point do not imply each other and that two definitions of minimal system are not equivalent for non-autonomous discrete systems. Finally, we introduce and study weakly sensitivity for non-autonomous discrete systems.
format Preprint
id arxiv_https___arxiv_org_abs_2410_13614
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Sensitivity, transitivity and chaos in non-autonomous discrete systems
Zeng, Hongbo
Dynamical Systems
In this paper, we study properties of sensitivity, transitivity and chaos for non-autonomous discrete systems(NDS). Firstly, we present some different sufficient conditions for NDS to be chaotic. Then, we relate the transitivity with the sensitivity of NDS and give several sufficient conditions for NDS to be sensitive. We obtain that transitivity and dense periodic points imply sensitivity, and that transitive system is either sensitive or almost equicontinuous. The results improve and extend some existing ones. Besides, we give some examples to show that there is a significant difference between the theory of ADS and the theory of NDS. We get that almost periodic point and minimal point do not imply each other and that two definitions of minimal system are not equivalent for non-autonomous discrete systems. Finally, we introduce and study weakly sensitivity for non-autonomous discrete systems.
title Sensitivity, transitivity and chaos in non-autonomous discrete systems
topic Dynamical Systems
url https://arxiv.org/abs/2410.13614