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Optical double-locked semiconductor lasers

机译:光学双锁半导体激光器

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摘要

Self-sustained period-one (P1) nonlinear dynamics of a semiconductor laser are investigated when both optical injection and modulation are applied for stable microwave frequency generation. Locking the P1 oscillation through modulation on the bias current, injection strength, or detuning frequency stabilizes the P1 oscillation. Through the phase noise variance, the different modulation types are compared. It is demonstrated that locking the P1 oscillation through optical modulation on the output of the master laser outperforms bias-current modulation of the slave laser. Master laser modulation shows wider P1-oscillation locking range and lower phase noise variance. The locking characteristics of the P1 oscillation also depend on the operating conditions of the optical injection system.
机译:当同时应用光学注入和调制来稳定生成微波频率时,研究了半导体激光器的自持周期一(P1)非线性动力学。通过对偏置电流,注入强度或失谐频率进行调制来锁定P1振荡,可以稳定P1振荡。通过相位噪声方差,比较不同的调制类型。结果表明,通过光学调制将P1振荡锁定在主激光器的输出上,性能优于从激光器的偏置电流调制。主激光调制显示出更宽的P1振荡锁定范围和更低的相位噪声方差。 P1振荡的锁定特性还取决于光学注入系统的工作条件。

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