Two-dimensional optical chimera states in an array of coupled waveguide resonators

Clerc, MG; Coulibaly, S; Ferre, MA; Tlidi, M

Abstract

Two-dimensional arrays of coupled waveguides or coupled microcavities allow us to confine and manipulate light. Based on a paradigmatic envelope equation, we show that these devices, subject to a coherent optical injection, support coexistence between a coherent and incoherent emission. In this regime, we show that two-dimensional chimera states can be generated. Depending on initial conditions, the system exhibits a family of two-dimensional chimera states and interaction between them. We characterize these two-dimensional structures by computing their Lyapunov spectrum and Yorke-Kaplan dimension. Finally, we show that two-dimensional chimera states are of spatiotemporal chaotic nature. Published under license by AIP Publishing.

Más información

Título según WOS: Two-dimensional optical chimera states in an array of coupled waveguide resonators
Título de la Revista: CHAOS
Volumen: 30
Número: 4
Editorial: AIP Publishing
Fecha de publicación: 2020
Idioma: English
DOI:

10.1063/1.5133836

Notas: ISI