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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Advanced design of a multichannel fiber Bragg grating based on a layer-peeling method
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Advanced design of a multichannel fiber Bragg grating based on a layer-peeling method

机译:基于层剥法的多通道光纤布拉格光栅的高级设计

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摘要

A multichannel fiber Bragg grating (FBG) design based on a discrete layer-peeling method is described. This novel method enables us to design any kind of multichannel FBG in which the spectrum responses of the channels can be either identical or nonidentical. In particular, a nine-channel dispersion-free FBG and a nine-channel nonlinearly chirped FBG used simultaneously as chromatic dispersion and dispersion slope compensators are described. Unlike the general multichannel FBG designed by a sampling method, these two gratings have ideal flat-topped profiles in both the transmission and the reflection spectra. By optimally detuning the relative phases for the multiple-spectrum channels with an iterative layer-peeling method, we can make maximum use of length-limited photosensitive fiber. Moreover, we show numerically that one can reduce or eliminate the oscillation that inherently exists in the index-change envelope of our multichannel FBG by accepting a decreased extinction ratio of the in-band signal to the out-of-band noises. (C) 2004 Optical Society of America.
机译:描述了一种基于离散层剥离方法的多通道光纤布拉格光栅(FBG)设计。这种新颖的方法使我们能够设计任何种类的多通道FBG,其中通道的频谱响应可以相同也可以不同。特别地,描述了同时用作色散和色散斜率补偿器的九通道无色散FBG和九通道非线性chiFBG。与通过采样方法设计的普通多通道FBG不同,这两个光栅在透射和反射光谱上均具有理想的平顶轮廓。通过使用迭代层剥离方法最佳地使多光谱通道的相对相位失谐,我们可以充分利用长度受限的光敏纤维。此外,我们通过数字显示,通过接受降低的带内信号与带外噪声的消光比,可以减少或消除固有存在于我们多通道FBG的索引变化包络中的振荡。 (C)2004年美国眼镜学会。

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