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Wave fronts and spatiotemporal chaos in an array of coupled Lorenz oscillators
D Pazó1, N Montejo, V Pérez-Muñuzuri
1Grupo de Física no Lineal, Facultad de Física, Universidad de Santiago de Compostela, 15706 Santiago de Compostela, Spain. diego@fmmeteo.usc.es
Abstract:
The effects of coupling strength and single-cell dynamics (SCD) on spatiotemporal pattern formation are studied in an array of Lorenz oscillators. Different spatiotemporal structures (stationary patterns, propagating wave fronts, short wavelength bifurcation) arise for bistable SCD, and two well differentiated types of spatiotemporal chaos for chaotic SCD (in correspondence with the transition from stationary patterns to propagating fronts). Wave-front propagation in the bistable regime is studied in terms of global bifurcation theory, while a short wavelength pattern region emerges through a pitchfork bifurcation.