6 pagesThermo-optical pulsing in semiconductor amplifiers is experimentally shown to correspond to a very common excitable scenario (the van der Pol–Fitzhugh–Nagumo system). Self-sustained oscillations appear in the sequence predicted by this simple dynamical model as we change either the injection level or the bias current. Periodic modulation of these parameters leads to the characteristic phase-locking structure. Furthermore, coherence resonance is observed when external noise is added to the system
International audienceWe study the dynamics of semiconductor lasers subject to strong delayed optica...
The frequency spectrum and the power output of a weakly optically-injected semiconductor laser in a ...
A numerical analysis is carried out to investigate the influence of injecting either unmodulated or ...
A detailed stability analysis is performed for a highly excited semiconductor modelled as an exciton...
The temporal evolution of self-phase modulation dynamics in a semiconductor optical amplifier is stu...
Self-sustained period-one (P1) nonlinear dynamics of a semiconductor laser are investigated when bot...
We present a systematic investigation of the dynamical behavior of semiconductor lasers subject to e...
We report on the observation of coherence resonance for a semiconductor laser with short optical fee...
We characterize the operation of semiconductor microring lasers in an excitable regime. Our experime...
The dynamics of semiconductor lasers exposed to optical feedback is the subject of this thesis. We h...
International audienceWe investigate the dynamics of semiconductor lasers subject to time-delayed op...
We investigate the dynamics of a semiconductor laser subject to coherent delayed filtered optical fe...
The dynamics of semiconductor lasers with optical feedback and current modulation has been extensive...
In this work we study the dynamics of a single-cavity semiconductor laser device, able to work in se...
A recent investigation into the operation of a semiconductor laser with optical feedback and direct ...
International audienceWe study the dynamics of semiconductor lasers subject to strong delayed optica...
The frequency spectrum and the power output of a weakly optically-injected semiconductor laser in a ...
A numerical analysis is carried out to investigate the influence of injecting either unmodulated or ...
A detailed stability analysis is performed for a highly excited semiconductor modelled as an exciton...
The temporal evolution of self-phase modulation dynamics in a semiconductor optical amplifier is stu...
Self-sustained period-one (P1) nonlinear dynamics of a semiconductor laser are investigated when bot...
We present a systematic investigation of the dynamical behavior of semiconductor lasers subject to e...
We report on the observation of coherence resonance for a semiconductor laser with short optical fee...
We characterize the operation of semiconductor microring lasers in an excitable regime. Our experime...
The dynamics of semiconductor lasers exposed to optical feedback is the subject of this thesis. We h...
International audienceWe investigate the dynamics of semiconductor lasers subject to time-delayed op...
We investigate the dynamics of a semiconductor laser subject to coherent delayed filtered optical fe...
The dynamics of semiconductor lasers with optical feedback and current modulation has been extensive...
In this work we study the dynamics of a single-cavity semiconductor laser device, able to work in se...
A recent investigation into the operation of a semiconductor laser with optical feedback and direct ...
International audienceWe study the dynamics of semiconductor lasers subject to strong delayed optica...
The frequency spectrum and the power output of a weakly optically-injected semiconductor laser in a ...
A numerical analysis is carried out to investigate the influence of injecting either unmodulated or ...