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Self-Consistent Simulation of Self-Pulsating Two-Section Gain-Coupled DFB Lasers

机译:自脉动两节增益耦合DFB激光器的自洽仿真

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摘要

The role of cavity conditions in the dynamics of two-section gain-coupled distributed feedback (DFB) lasers is investigated using a self-consistent model. Self-sustained pulsation (SSP) exists only for devices with strongly coupled DFB gratings. As the coupling strength increases, multiple SSP regimes are developed. The SSP frequency tuning range increases as cavity length decreases. The frequency and modulation index predicted by the model agree well with experimental results. The facet condition of each section is found to affect SSP differently because of the asymmetrical behavior of the modes responsible for SSP.
机译:使用自洽模型研究腔条件在两节增益耦合分布式反馈(DFB)激光器动力学中的作用。自持脉动(SSP)仅适用于具有强耦合DFB光栅的设备。随着耦合强度的增加,出现了多种SSP机制。 SSP频率调谐范围随着腔体长度的减小而增加。该模型预测的频率和调制指数与实验结果吻合良好。由于负责SSP的模式的不对称行为,发现每个部分的刻面条件对SSP的影响不同。

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