High-frequency chaotic dynamics enabled by optical phase-conjugation.

Sci Rep

LMOPS, OPTEL (Optics and Electronics Research Group), CentraleSupélec, Université Paris-Saclay, 57070 METZ.

Published: January 2016

Wideband chaos is of interest for applications such as random number generation or encrypted communications, which typically use optical feedback in a semiconductor laser. Here, we show that replacing conventional optical feedback with phase-conjugate feedback improves the chaos bandwidth. In the range of achievable phase-conjugate mirror reflectivities, the bandwidth increase reaches 27% when compared with feedback from a conventional mirror. Experimental measurements of the time-resolved frequency dynamics on nanosecond time-scales show that the bandwidth enhancement is related to the onset of self-pulsing solutions at harmonics of the external-cavity frequency. In the observed regime, the system follows a chaotic itinerancy among these destabilized high-frequency external-cavity modes. The recorded features are unique to phase-conjugate feedback and distinguish it from the long-standing problem of time-delayed feedback dynamics.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4704029PMC
http://dx.doi.org/10.1038/srep18988DOI Listing

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