A taxonomy for generalized synchronization between flat-coupled systems

Fuente: arXiv
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Main Authors: Letellier, Christophe, Minati, Ludovico, Sendina-Nadal, Irene, Leyva, I.
Format: Preprint
Published: 2024
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author Letellier, Christophe
Minati, Ludovico
Sendina-Nadal, Irene
Leyva, I.
author_facet Letellier, Christophe
Minati, Ludovico
Sendina-Nadal, Irene
Leyva, I.
contents Generalized synchronization is plausibly the most complex form of synchronization. Previous studies have revealed the existence of weak or strong forms of generalized synchronization depending on the multi- or mono-valued nature of the mapping between the attractors of two unidirectionally-coupled systems. Generalized synchronization is here obtained by coupling two systems with a flat control law. Here, we demonstrate that the corresponding first-return maps can be topologically conjugate in some cases. Conversely, the response map can foliated while the drive map is not. We describe the corresponding types of generalized synchronization, explicitly focusing on the influence of the coupling strength when significantly different dimensions or dissipation properties characterize the coupled systems. A taxonomy of generalized synchronization based on these properties is proposed.
format Preprint
id arxiv_https___arxiv_org_abs_2401_11561
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A taxonomy for generalized synchronization between flat-coupled systems
Letellier, Christophe
Minati, Ludovico
Sendina-Nadal, Irene
Leyva, I.
Chaotic Dynamics
Generalized synchronization is plausibly the most complex form of synchronization. Previous studies have revealed the existence of weak or strong forms of generalized synchronization depending on the multi- or mono-valued nature of the mapping between the attractors of two unidirectionally-coupled systems. Generalized synchronization is here obtained by coupling two systems with a flat control law. Here, we demonstrate that the corresponding first-return maps can be topologically conjugate in some cases. Conversely, the response map can foliated while the drive map is not. We describe the corresponding types of generalized synchronization, explicitly focusing on the influence of the coupling strength when significantly different dimensions or dissipation properties characterize the coupled systems. A taxonomy of generalized synchronization based on these properties is proposed.
title A taxonomy for generalized synchronization between flat-coupled systems
topic Chaotic Dynamics
url https://arxiv.org/abs/2401.11561