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Extending the direct laser modulation bandwidth by exploiting the photon-photon resonance: modeling, simulations and experiments

机译:通过利用光子-光子共振来扩展直接激光调制带宽:建模,仿真和实验

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The direct laser modulation bandwidth can be extended substantially by introducing a supplementary photon-photon resonance (PPR) at a higher frequency than the carrier-photon resonance (CPR). The paper presents a modified rate equation model that takes into account the PPR by treating the longitudinal confinement factor as a dynamic variable. The conditions required for obtaining a strong PPR and an enhancement of the small-signal modulation bandwidth are analyzed and experimental results confirming the model are presented. Since the small-signal modulation bandwidth may not be indicative of the large-signal modulation capability, particularly in case of a small-signal modulation response with substantial variations across the bandwidth, we have also analyzed the influence of the PPR-enhanced small-signal modulation response shape on the large-signal modulation capability as well as the methods that can be employed to flatten the small-signal modulation transfer function between the CPR and PPR.
机译:通过以高于载波-光子共振(CPR)的频率引入补充光子-光子共振(PPR),可以实质上扩展直接激光调制带宽。本文提出了一种改进的速率方程模型,该模型通过将纵向约束因子视为动态变量来考虑PPR。分析了获得强大的PPR和增强小信号调制带宽所需的条件,并给出了证实该模型的实验结果。由于小信号调制带宽可能无法表示大信号调制能力,特别是在小信号调制响应在整个带宽上有较大变化的情况下,因此我们还分析了PPR增强型小信号的影响大信号调制能力上的调制响应形状,以及可用于平坦化CPR和PPR之间的小信号调制传递函数的方法。

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