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On design of a novel dispersionless comb gain equalizer for fiber optical parametric amplifier

机译:一种新型的用于光纤参量放大器的无色散梳状增益均衡器的设计

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A novel superstructure fiber Bragg grating (SFBG) based comb gain equalizer for fiber optical parametric amplifier (OPA) is proposed. This gain equalizer is characterized by its comb reflectivity spectrum. It can have two functions at least, one is flattening the gain in multi ITU-T regulated channels, the other is it can be used as multi-channel isolation filters taking full advantage of its comb reflectivity spectrum. In addition it can be dispersionless or have dispersion compensation function. A one-bump fiber OPA, 30dB bandwidth >15nm, is designed with one of its peak gains (41dB) located at the center of work wavelengths in a 16-channel 100GHz spaced WDM optical transmission system according to corresponding Chinese criterion (1548.51nm~ 1560.61nm). The object reflectivity spectra of gain equalizer are calculated in two parts independently. Inner channel part for every channel is designed according to the gain spectrum of fiber OPA. As a comb filter, its inter-channel part reflectivities are the smaller the better. But inter-channel part reflectivities can not be simply zeroed, for which would result in the rising and descending edges of reflectivity spectrum being too sharp to be performed by any filter. To split the difference, inter-channel part reflectivities are calculated with Gaussian hypergeometric function (-0.5dB bandwidth 0.1nm, -45dB bandwidth 0.3nm) to obtain slower rising and descending edges than the simply zeroed case, which is very necessary and important to be sure the object reflectivity spectrum not only has sharp enough edges to take the shape of comb but also is physically realizable. Adopting channel-by-channel windowing method to apodize the object reflectivity spectrum, a superstructure fiber Bragg grating is designed with lay-peeling inverse scattering technique. At last, according to the coupling coefficient calculated, reflection spectrum and group time delay are analyzed based on the method of transformation matrix. Calculation results show that this SFBG satisfies all requirements. Further calculation results show that, using this SFBG as comb gain equalizer, the gain of fiber OPA is flattened in every channel to within ± 0.4dB among 16 channels, with channel isolation high up to -35dB. It needs to point out that this method can also be used to design gain equalizer for other optical amplifiers.
机译:提出了一种基于超结构光纤布拉格光栅(SFBG)的梳状增益均衡器,用于光纤参量放大器(OPA)。该增益均衡器的特点是梳状反射光谱。它至少可以具有两个功能,一个功能是使多个ITU-T调节的信道中的增益平坦,另一个是可以充分利用其梳状反射率频谱而用作多信道隔离滤波器。另外,它可以是无色散的或具有色散补偿功能。根据相应的中国标准(1548.51nm〜),设计了一种单峰光纤OPA,其带宽> 15nm的30dB,其峰值增益(41dB)位于16通道100GHz间隔WDM光传输系统中的工作波长中心。 1560.61nm)。增益均衡器的物体反射光谱是分两部分独立计算的。根据光纤OPA的增益谱设计每个通道的内部通道部分。作为梳状滤波器,其通道间部分反射率越小越好。但是,通道间部分的反射率不能简单地归零,因为这将导致反射率频谱的上升和下降沿过于尖锐,以至于无法通过任何滤波器执行。为了消除差异,使用高斯超几何函数(-0.5dB带宽0.1nm,-45dB带宽0.3nm)来计算通道间部分的反射率,以得到比简单归零情况下更慢的上升沿和下降沿,这对确保物体反射光谱不仅具有足够锐利的边缘以呈梳状,而且可以物理实现。采用逐通道加窗方法对目标反射率光谱进行变迹,利用层间剥离逆散射技术设计了超结构光纤布拉格光栅。最后,根据计算出的耦合系数,采用变换矩阵法对反射光谱和群时延进行了分析。计算结果表明,该SFBG满足所有要求。进一步的计算结果表明,使用该SFBG作为梳状增益均衡器,光纤OPA的增益在16个通道中的每个通道中均被平坦化至±0.4dB以内,通道隔离度高达-35dB。需要指出的是,该方法还可以用于设计其他光放大器的增益均衡器。

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