Abstract
We implement a method to identify the deterministic nature of specific events in the dynamics of a semiconductor laser subject to time-delayed optical feedback. Specifically, we study the power dropouts in the low-frequency fluctuations regime on an individual event basis and identify whether the underlying dominant mechanism is deterministic. Our approach is based on sychronization with a twin system in a symmetric relay configuration. We investigate the dependence of the fraction of deterministically driven (i.e., synchronized) dropouts on the laser's pump current as a key parameter. Our experimental results are corroborated by numerical modeling based on rate equations. Our numerical findings also provide insights into the influence of spontaneous emission noise. © 2013 American Physical Society.
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CITATION STYLE
Hicke, K., Porte, X., & Fischer, I. (2013). Characterizing the deterministic nature of individual power dropouts in semiconductor lasers subject to delayed feedback. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 88(5). https://doi.org/10.1103/PhysRevE.88.052904
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