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Reflective semiconductor optical amplifier pattern effect compensation with birefringent fiber loop

机译:具有双折射光纤环的反射半导体光学放大器图案效果补偿

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摘要

We experimentally explore and demonstrate the potential of a birefringent fiber loop (BFL) to compensate for the pattern effects (PE) induced in a reflective semiconductor optical amplifier (RSOA), which is driven by optical data whose intensity, temporal and spectral characteristics heavily stress the RSOA. By properly tailoring the BFL comb-like profile and adjusting the relative offset between the BFL maximum transmission and carrier signal position, the BFL improves the RSOA pattern-dependent performance even though the input pulses' modulation bandwidth exceeds the 3 dB cut-off frequency of the RSOA optical response. The extensive set of obtained experimental results confirms the BFL capability to enhance the RSOA operation even under strong saturation, since the BFL acts in a beneficial manner on the amplified pulses by reducing their overshoot to an acceptable level, restoring their spectral position, reshaping their eye diagram and increasing their input power dynamic range. These notable improvements, combined with the construction from off-the-shelf components, straightforward implementation, simplicity of operation and flexibly tunable transmission characteristics, render the BFL an attractive solution for efficiently combating the RSOA PE and resolving its undesirable complications.
机译:我们通过实验探索并证明双折射光纤环(BFL)的潜力来补偿在反射半导体光学放大器(RSOA)中引起的模式效应(PE),其由光学数据驱动,其强度,时间和光谱特性严重应力rsoa。通过正确定制BFL梳状型材并调整BFL最大传输和载波信号位置之间的相对偏移,即使输入脉冲的调制带宽超过3 dB截止频率,BFL也可以提高RSOA模式相关性能rsoa光学响应。所获得的实验结果的广泛集合证实了即使在强饱和度下提高RSOA操作,因为BFL通过将其过冲降至可接受的水平,恢复它们的光谱位置,因此BFL在放大的脉冲上以有益的方式作用。图表并增加其输入功率动态范围。这些显着的改进,结合搁板组件的构造,直接实现,操作简单,灵活的可调传输特性,使BFL成为有吸引力的解决方案,用于有效地打击RSOA PE并解决其不良并发症。

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