Mapping the instabilities and nonlinear dynamics in semiconductor lasers subject to optical injection
T.B. Simpson, Vassilios Kovanis, A. Gavrielides, J. M. Liu
Abstract
T.B. Simpson, Vassilios Kovanis, A. Gavrielides, J. M. Liu
Abstract
Summary form only given. We have mapped the different kinds of dynamics observed experimentally in a conventional Fabry-Perot laser diode under optical injection as a function of the detuning between the master and free-running slave lasers and the amplitude of the injected field. Stable injection locking, periodic oscillations at the injection-modified carrier-field resonance frequency, period-doubling and quadrupling, chaotic dynamics, four-wave mixing and multiwave mixing, subharmonic resonances at half the injection frequency offset and mode hopping to other longitudinal modes are all observed under different injection conditions.
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Summary form only given. We have mapped the different kinds of dynamics observed experimentally in a conventional Fabry-Perot laser diode under optical injection as a function of the detuning between the master and free-running slave lasers and the amplitude of the injected field. Stable injection locking, periodic oscillations at the injection-modified carrier-field resonance frequency, period-doubling and quadrupling, chaotic dynamics, four-wave mixing and multiwave mixing, subharmonic resonances at half the injection frequency offset and mode hopping to other longitudinal modes are all observed under different injection conditions.
Key concepts: Injection locking, Semiconductor laser theory, Laser, Amplitude, Physics, Mixing (physics), Diode, Four-wave mixing