Crisis route to chaos in semiconductor lasers subjected to external optical feedback

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Abstract

Semiconductor lasers subjected to optical feedback have been intensively used as archetypical testbeds for high-speed (sub-ns) and high-dimensional nonlinear dynamics. By simultaneously extracting all the dynamical variables, we demonstrate that for larger current, the commonly named "quasiperiodic" route is in fact based on mixed external-cavity solutions that lock the oscillation frequency of the intensity, voltage, and separation in optical frequency through a mechanism involving successive rejections along the unstable manifold of an antimode. We show that chaos emerges from a crisis resulting from the inability to maintain locking as the unstable manifold becomes inaccessible.

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APA

Wishon, M. J., Locquet, A., Chang, C. Y., Choi, D., & Citrin, D. S. (2018). Crisis route to chaos in semiconductor lasers subjected to external optical feedback. Physical Review A, 97(3). https://doi.org/10.1103/PhysRevA.97.033849

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