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Design of Ultrafast All-Optical Signal Processing Devices Based on Fiber Bragg Gratings in Transmission

机译:基于光纤布拉格光栅的超快全光信号处理装置的设计

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摘要

A general and practical approach for designing ultra-fast all-optical (all-fiber) signal processing devices based on chirped fiber Bragg gratings (C-FBGs) working in transmission is presented. The approach can be used to design any minimum-phase linear optical device, e.g., first and high-order all-optical time differentiators and integrators and a large variety of optical pulse shapers, significantly overcoming the bandwidth limitations of previous FBG-based designs. Processing speeds in the THz range, corresponding to sub-picosecond time features, can be achieved using readily feasible grating apodization profiles. The approach is successfully proved through the design of two relevant functionalities, namely a THz-bandwidth optical differentiator and a 1-ps flat-top optical pulse shaper.
机译:提出了一种通用的实用方法,用于设计基于传输中工作的chi光纤布拉格光栅(C-FBG)的超快全光(全光纤)信号处理设备。该方法可用于设计任何最小相位线性光学器件,例如一阶和高阶全光学时间微分器和积分器以及各种光脉冲整形器,从而大大克服了以前基于FBG的设计的带宽限制。太赫兹范围内的处理速度,对应于亚皮秒的时间特征,可以使用容易实现的光栅变迹曲线来实现。通过设计两个相关功能,即THz带宽光微分器和1-ps平顶光脉冲整形器,成功地证明了该方法。

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