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JOURNALS // Uspekhi Fizicheskikh Nauk // Archive

UFN, 2020 Volume 190, Number 2, Pages 160–178 (Mi ufn6403)

This article is cited in 10 papers

REVIEWS OF TOPICAL PROBLEMS

Spatio-temporal structures in ensembles of coupled chaotic systems

G. I. Strelkova, V. S. Anishchenko

Chernyshevskii Saratov State University

Abstract: We review numerical results of studies of the complex dynamics of one- and double-dimensional networks (ensembles) of nonlocally coupled identical chaotic oscillators in the form of discrete- and continuous-time systems, as well as lattices of coupled ensembles. We show that these complex networks can demonstrate specific types of spatio-temporal patterns in the form of chimera states, known as the coexistence of spatially localized domains of coherent (synchronized) and incoherent (asynchronous) dynamics in a network of nonlocally coupled identical oscillators. We describe phase, amplitude, and double-well chimeras and solitary states; their basic characteristics are analyzed and compared. We focus on two basic discrete-time models, H$\acute {e}$non and Lozi maps, which can be used to describe typical chimera structures and solitary states in networks of a wide range of chaotic oscillators. We discuss the bifurcation mechanisms of their appearance and evolution. In conclusion, we describe effects of synchronization of chimera states in coupled ensembles of chaotic maps.

Keywords: ensembles, nonlocal coupling, chimera states, spatio-temporal structure, synchronization, discrete maps, dynamical chaos.

PACS: 05.45.Ra, 05.45.Xt, 05.65.+b

Received: October 10, 2018
Revised: January 10, 2019
Accepted: January 17, 2019

DOI: 10.3367/UFNr.2019.01.038518


 English version:
Physics–Uspekhi, 2020, 63:2, 145–161

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