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40 GHz mode-locked semiconductor lasers: Theory, simulations and experiment

机译:40 GHz锁模半导体激光器:理论,仿真和实验

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摘要

We study both theoretically and experimentally typical operation regimes of 40 GHz monolithic mode-locked lasers. The underlying Traveling Wave Equation model reveals quantitative agreement for characteristics of the fundamental mode-locking as pulse width and repetition frequency tuning, as well as qualitative agreement with the experiments for other dynamic regimes. Especially the appearance of stable harmonic mode-locking at 80 GHz has been predicted theoretically and confirmed by measurements. Furthermore, we derive and apply a simplified Delay-Differential-Equation model which guides us to a qualitative analysis of bifurcations responsible for the appearance and the breakup of different mode-locking regimes. Higher harmonics of mode-locking are predicted by this model as well.
机译:我们研究了40 GHz单片锁模激光器的理论和实验典型操作方案。潜在的行波方程模型揭示了基本锁模特性(如脉冲宽度和重复频率调谐)的定量一致性,以及与其他动态方案的实验的定性一致性。尤其是理论上已经预测并通过测量证实了在80 GHz处出现稳定的谐波锁模现象。此外,我们推导并应用了简化的延迟微分方程模型,该模型指导我们对分叉的定性分析,该分叉负责不同锁模方式的出现和破坏。该模型也可以预测锁模的高次谐波。

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