Chimera-like states in an array of coupled-waveguide resonators
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Clerc Gavilán, Marcel
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Chimera-like states in an array of coupled-waveguide resonators
Abstract
We consider coupled-waveguide resonators subject to optical injection. The dynamics of this simple device are described by the discrete Lugiato-Lefever equation. We show that chimera-like states can be stabilized, thanks to the discrete nature of the coupled-waveguide resonators. Such chaotic localized structures are unstable in the continuous Lugiato-Lefever model; this is because of dispersive radiation from the tails of localized structures in the form of two counter-propagating fronts between the homogeneous and the complex spatiotemporal state. We characterize the formation of chimera-like states by computing the Lyapunov spectra. We show that localized states have an intermittent spatiotemporal chaotic dynamical nature. These states are generated in a parameter regime characterized by a coexistence between a uniform steady state and a spatiotemporal intermittency state.
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Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
PII20150011
Belgian Science Policy Office
IAPP7-35
Agence Nationale de la Recherche (ANR)
OptiRoc N12-BS04-0011
Fonds National de la Recherche Scientifique (Belgium)
Evaluation-orientation de la Cooperation Scientifique (ECOS)
C15E06
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Optics Letters Vol. 42, No. 15: 2906-2909, August 1 2017
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