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Dynamics of monolithic passively mode-locked semiconductor lasers

机译:单片被动锁模半导体激光器的动力学

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摘要

Monolithic colliding pulse mode-locking (CPM) in semiconductor lasers is compared with self colliding pulse mode-locking (SCPM) through a large signal dynamic computer model which incorporates most of the significant features of semiconductor lasers. These include gain saturation, spontaneous emission, the gain-frequency relation, and the line-width enhancement factor. This new model replicates many of the published experimental results and also gives additional insight into the internal operation of the device. In particular, gain saturation combined with the standing waves created by colliding pulses within the saturable absorber produce a transient gain grating. This is found to have significant effects in locking either the even or the odd modes together in CPM. A performance comparison between CPM and SCPM is completed and some key design parameters of both configurations are explored.
机译:通过包含半导体激光器大多数重要特征的大信号动态计算机模型,将半导体激光器中的单片碰撞脉冲锁模(CPM)与自碰撞脉冲锁模(SCPM)进行了比较。这些包括增益饱和,自发发射,增益-频率关系和线宽增强因子。该新模型可复制许多已发布的实验结果,并且还可以进一步了解设备的内部操作。特别是,增益饱和与可饱和吸收体中的碰撞脉冲所产生的驻波相结合,产生了瞬态增益光栅。发现这在将CPM中的偶数或奇数模式锁定在一起方面具有显著作用。完成了CPM和SCPM之间的性能比较,并探讨了两种配置的一些关键设计参数。

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