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Modeling self-pulsating DFB lasers with an integrated phase tuning section

机译:具有集成相位调整部分的自脉冲DFB激光器建模

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摘要

A theoretical model of a self-pulsating three-section DFB laser with an integrated phase tuning section is established. It is based on traveling wave equations and the standard carrier rate equations. Parameters of an existing device are used for applying the model. Key conditions and characteristics of self-pulsations (SPs) are modeled and compared with experimental results. The important role of phase tuning for turning on the SP is pointed out. The dependence of the SP regime on the detuning between the Bragg wavelengths in the laser and reflector is determined and the essential role of phase-readjustment is identified. Frequency tuning via the laser currents, as well as the pulse shape at various frequencies, is investigated. This allows us to identify the mechanism for frequency tuning. The model turns out to be a good tool to improve our knowledge of the self-pulsation effect and to design optimized devices.
机译:建立了具有集成相位调谐部分的自脉冲三部分DFB激光器的理论模型。它基于行波方程式和标准载波速率方程式。现有设备的参数用于应用模型。对关键条件和自脉动(SP)的特征进行建模,并与实验结果进行比较。指出了相位调整对于打开SP的重要作用。确定了SP制度对激光器和反射镜中布拉格波长之间失谐的依赖性,并确定了相位重新调节的基本作用。研究了通过激光电流进行的频率调谐以及各种频率下的脉冲形状。这使我们能够确定频率调谐的机制。该模型证明是提高我们对自脉动效应的了解并设计优化设备的好工具。

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