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Phase locking and chaos synchronization in injection-locked semiconductor lasers

机译:注入锁定半导体激光器中的锁相和混沌同步

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We theoretically studied synchronization of chaotic oscillation in semiconductor lasers with chaotic light injection. Feedback-induced chaotic light generated from a master semiconductor laser was injected into a solitary slave semiconductor laser. The slave laser subsequently exhibited synchronized chaotic output for a wide parameter range with strong injection and frequency detuning within the injection-locking regime. Our numerical simulation revealed that the synchronized slave laser exhibits remarkable phase locking, even for chaotic light injection. Consequently, synchronization in phase fluctuations becomes dominant over intensity fluctuations. We found that there exists a parameter range where the slave can synchronize in phase only, with no intensity synchronization. However, synchronization can be completely destroyed, both in phase and in intensity, when the phase locking becomes unstable due to four-wave mixing or excited resonance oscillation. The phase locking was studied analytically and the correspondence between numerical and analytical results was shown. We also analytically examined chaos synchronization based on a linear stability analysis from the viewpoint of modulation response of injection-locked semiconductor lasers to a chaotic light signal. As a result, we verified that such injection-locking-induced chaos synchronization results from a quasilinear response of the bandwidth-broadened slave laser due to strong optical injection.
机译:我们从理论上研究了半导体激光器中混沌振荡与混沌光注入的同步。从主半导体激光器产生的反馈感应混沌光被注入到一个单独的从属半导体激光器中。从激光器随后在宽的参数范围内表现出同步混沌输出,在注入锁定范围内具有强注入和频率失谐。我们的数值仿真表明,即使对于混沌光注入,同步从激光器也具有出色的锁相性能。因此,相位波动的同步超过强度波动。我们发现存在一个参数范围,在该范围内,从站只能进行相位同步,而没有强度同步。但是,当锁相由于四波混频或激发谐振而变得不稳定时,无论在相位上还是强度上,同步都可能被完全破坏。对锁相进行了分析研究,并显示了数值与分析结果之间的对应关系。从注入锁定半导体激光器对混沌光信号的调制响应的角度出发,我们还基于线性稳定性分析来分析检查混沌同步。结果,我们验证了这种注入锁定引起的混沌同步是由于强光注入导致带宽增加的从属激光器的准线性响应引起的。

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