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Numerical model of the dynamic absorption variation in QW-EAM for ultrafast all-optical signal processing

机译:超快全光信号处理中QW-EAM中动态吸收变化的数值模型

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Noise reduction techniques, such as all-optical 3R regeneration, can be realised using ultrafast saturable absorbers, both for the clock recovery block and for the reshaping block. Electroabsorption modulators (EAM) can be used as saturable absorbers when they are traversed by a strong pump optical pulse, which can reduce the absorption experienced by a second probe signal that propagates along the device together with the pump: this feature is called cross-absorption modulation (XAM). The authors present a novel numerical model to evaluate the dynamic behaviour of a quantum well EAM absorption, that can be applied in all-optical signal processing schemes for ultrafast transmission systems. The effects of both electric field screening and exciton saturation are taken into account. Numerical results agree with the experimental device behaviour reported in the literature.
机译:降噪技术,例如全光3R再生,可以使用超快的可饱和吸收器来实现,既可以用于时钟恢复模块,也可以用于整形模块。当电吸收调制器(EAM)被强大的泵浦光脉冲穿过时,可以用作可饱和吸收体,这可以减少与泵一起沿设备传播的第二个探头信号所经历的吸收:此功能称为交叉吸收调制(XAM)。作者提出了一种新颖的数值模型来评估量子阱EAM吸收的动态行为,该模型可用于超快传输系统的全光信号处理方案中。考虑了电场屏蔽和激子饱和的影响。数值结果与文献报道的实验装置行为一致。

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