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A novel dispersionless comb gain equalizer for fiber-optical parametric amplifier

机译:用于光纤参量放大器的新型无色散梳状增益均衡器

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摘要

In this article, we propose a novel superstructure fiber Bragg grating (SFBG)- based comb gain equalizer for fiber-optical parametric amplifiers (FOPAs). The target spectrum of the gain equalizer is obtained by two steps. Initially, we calculate the spectrum according to the inverse of the gain spectrum of the FOPA. Then we apply a channel-by-channel windowing method to shape each channel and adopt a Gaussian hypergeometric function to describe the rising and descending edges of each channel. The SFBG is finally synthesized with layer-peeling inverse scattering technique. Using the designed SFBG, the gain variation of the FOPA is flattened to be within +/- 0.4 dB for 16 ITU channels and the best channel isolation is as high as 35 dB. It should be pointed out that the proposed method could also be used to design gain equalizers for other optical amplifiers.
机译:在本文中,我们提出了一种基于超结构光纤布拉格光栅(SFBG)的新型梳状增益均衡器,用于光纤参量放大器(FOPA)。增益均衡器的目标频谱通过两个步骤获得。最初,我们根据FOPA增益频谱的倒数来计算频谱。然后,我们采用逐通道加窗方法对每个通道进行整形,并采用高斯超几何函数来描述每个通道的上升沿和下降沿。最后利用层剥离逆散射技术合成了SFBG。使用设计的SFBG,对于16个ITU通道,FOPA的增益变化被平坦化到+/- 0.4 dB以内,并且最佳的通道隔离度高达35 dB。应当指出,所提出的方法也可以用于设计其他光放大器的增益均衡器。

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