Title :
Localized states and excitability in a monolithic VCSEL with saturable absorber
Author :
Barbay, S. ; Sagnes, I. ; Kuszelewicz, R. ; Yacomotti, A.M.
Author_Institution :
Lab. de Photonique et de Nanostruct., Marcoussis, France
Abstract :
We present experimental results on nonlinear localization and excitability in an original design of a Vertical Cavity Surface Emitting Laser with intracavity saturable absorber. Depending on the sample temperature, the VCSEL with saturable absorber can be locally bistable or self-pulsing at threshold. In the first case, self-localized states (laser cavity solitons) are demonstrated, excited and erased incoherently at a fast rate. We present also evidence of optical manipulation of self-pulsing states. In the second case, type III excitability is demonstrated. Excitability in a laser with saturable absorber occurs below the self-pulsing instability domain and is characterized by : 1) a threshold in the response to an input perturbation leading to a “all or nothing” type of response and 2) the appearance of a calibrated response above threshold. We compare our experimental results to a model, including the effect of noise. Finally, we present numerical results on an array of coupled micropillar cavities demonstrating nonlinear wave propagation. The vertical cavity design presented here could constitute a compact platform for realization of various micro and nanophotonic semiconductor devices for applications to innovative all-optical signal-processing tasks, e.g. excitable logic-gates or reservoir computing.
Keywords :
nanophotonics; optical saturable absorption; surface emitting lasers; all-optical signal-processing; coupled micropillar cavities; monolithic vertical cavity surface emitting laser; nanophotonic semiconductor devices; nonlinear localization; nonlinear wave propagation; optical manipulation; saturable absorber; self-localized states; self-pulsing instability domain; self-pulsing states; type III excitability; Cavity resonators; Laser excitation; Nonlinear optics; Optical solitons; Vertical cavity surface emitting lasers; VCSEL; cavity soliton; excitability; self-pulsing;
Conference_Titel :
Laser Dynamics and Nonlinear Photonics, 2011 Fifth Rio De La Plata Workshop on
Conference_Location :
Colonia del Sacramento
Print_ISBN :
978-1-4577-1445-0
DOI :
10.1109/LDNP.2011.6162072