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1.
Phys Rev E Stat Nonlin Soft Matter Phys ; 84(4 Pt 2): 047201, 2011 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-22181318

RESUMO

Chaotically spiking attractors in semiconductor lasers with optoelectronic feedback have been recently observed to be the result of canard phenomena in three-dimensional phase space (incomplete homoclinic scenarios). Since light-emitting diodes display the same dynamics and are much more easily controllable, we use one of these systems to complete the attractor analysis demonstrating experimentally and theoretically the occurrence of complex sequences of periodic mixed-mode oscillations. In particular, we investigate the transition between periodic and chaotic mixed-mode states and analyze the effects of the unavoidable experimental noise on these transitions.


Assuntos
Equipamentos e Provisões Elétricas , Retroalimentação , Luz , Modelos Teóricos , Arsenicais , Gálio , Lasers , Dinâmica não Linear
2.
Phys Rev E Stat Nonlin Soft Matter Phys ; 80(1 Pt 2): 016211, 2009 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-19658796

RESUMO

Stochastic disturbances and spikes (sudden sharp fluctuations of any system parameter), commonly observed among natural and laboratory-scale systems, can perturb the multistable dynamics significantly and become a serious impediment when the device is designed for a certain dynamical behavior. We experimentally demonstrate that suitable periodic modulation of any system parameter may efficiently control such stochastic multistability related problems. The control mechanism is verified individually with two standard models (namely, an analog circuit of Lorenz equations and a cavity-loss modulated CO2 laser), against three externally introduced disturbing signals, (namely, white Gaussian noise, pink noise, and train of spikes). Indeed, with both the systems, it has been observed that the modulation is capable to significantly control untoward jumps to coexisting attractors that otherwise would have occurred due to either of the disturbances. These results establish the robustness and wide applicability of this control mechanism in resolving stochastic multistability related problems.

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