We characterize the operation of semiconductor microring lasers in an excitable regime. Our experiments reveal a statistical distribution of the characteristics of noise-triggered optical pulses that is not observed in other excitable systems. In particular, an inverse correlation exists between the pulse amplitude and duration. Numerical simulations and an interpretation in an asymptotic phase space confirm and explain these experimentally observed pulse characteristics. © 2010 The American Physical Society.9 pages, 10 figuresstatus: publishe
We report theoretically and experimentally on excitability in semiconductor ring lasers in order to ...
Optical excitable devices that mimic neuronal behavior can be building-blocks of novel, brain-inspir...
The noise behavior of mode-locked semiconductor ring laser, including timing jitter, and pulse energ...
A two-section semiconductor laser can exhibit excitability for certain parameter settings. When used...
Noise-induced excitability is a prevalent feature in many nonlinear dynamical systems. The optically...
We have analyzed and explained the generation of irregularly timed, spontaneous-emission triggered o...
We find that, although inversion noise has only a marginal effect on the linewidth of a semiconducto...
The notion of excitability originally comes from biology [1]-[3] and chemistry [4]. Using the langua...
Nonlinear pulse propagation is a major feature in continuously extended excitable systems. The persi...
We report theoretically and experimentally on excitability in semiconductor ring lasers in order to ...
Optically injected semiconductor lasers are known to display a rich variety of dynamic behaviours, i...
We use statistical tools to characterize the response of an excitable system to periodic perturbatio...
We present a numerical study of the pulses displayed by a semiconductor laser with optical feedback ...
We report theoretically and experimentally on excitability in semiconductor ring lasers in order to ...
6 pagesThermo-optical pulsing in semiconductor amplifiers is experimentally shown to correspond to a...
We report theoretically and experimentally on excitability in semiconductor ring lasers in order to ...
Optical excitable devices that mimic neuronal behavior can be building-blocks of novel, brain-inspir...
The noise behavior of mode-locked semiconductor ring laser, including timing jitter, and pulse energ...
A two-section semiconductor laser can exhibit excitability for certain parameter settings. When used...
Noise-induced excitability is a prevalent feature in many nonlinear dynamical systems. The optically...
We have analyzed and explained the generation of irregularly timed, spontaneous-emission triggered o...
We find that, although inversion noise has only a marginal effect on the linewidth of a semiconducto...
The notion of excitability originally comes from biology [1]-[3] and chemistry [4]. Using the langua...
Nonlinear pulse propagation is a major feature in continuously extended excitable systems. The persi...
We report theoretically and experimentally on excitability in semiconductor ring lasers in order to ...
Optically injected semiconductor lasers are known to display a rich variety of dynamic behaviours, i...
We use statistical tools to characterize the response of an excitable system to periodic perturbatio...
We present a numerical study of the pulses displayed by a semiconductor laser with optical feedback ...
We report theoretically and experimentally on excitability in semiconductor ring lasers in order to ...
6 pagesThermo-optical pulsing in semiconductor amplifiers is experimentally shown to correspond to a...
We report theoretically and experimentally on excitability in semiconductor ring lasers in order to ...
Optical excitable devices that mimic neuronal behavior can be building-blocks of novel, brain-inspir...
The noise behavior of mode-locked semiconductor ring laser, including timing jitter, and pulse energ...