Class-C semiconductor lasers with time-delayed optical feedback

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Abstract

We perform a linear stability analysis and numerical bifurcation diagrams of a class-C laser with time-delayed optical feedback. We employ a rate equation system based on the Maxwell-Bloch equations, and study the influence of the dephasing time on the laser dynamics. We find a stabilizing effect of an intermediate dephasing time, i.e. when moving from a class-B to a class-C laser. At long dephasing times, a destabilization of the laser solution occurs by a feedback-induced unlocking of Rabi oscillations at the second laser threshold. We predict an optimum resistance to time-delayed optical feedback for dephasing times close to the photon cavity lifetime.

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Lingnau, B., Turnwald, J., & Lüdge, K. (2019). Class-C semiconductor lasers with time-delayed optical feedback. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 377(2153). https://doi.org/10.1098/rsta.2018.0124

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