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基于光纤布拉格光栅的任意阶全光纤时间微分器:设计与实验验证

Arbitrary-order all-fiber temporal differentiator based on a fiber Bragg grating: design and experimental demonstration.

作者信息

Li Ming, Janner Davide, Yao Jianping, Pruneri Valerio

机构信息

Microwave Photonics Research Laboratory, School of Information Technology and Engineering University of Ottawa, Ottawa, ON K1N 6N5, Canada.

出版信息

Opt Express. 2009 Oct 26;17(22):19798-807. doi: 10.1364/OE.17.019798.

Abstract

A new technique to design an all-fiber temporal differentiator that has a large bandwidth and an arbitrary differentiation order is proposed and investigated. The proposed temporal differentiator is a special fiber Bragg grating (FBG) that is designed by controlling its magnitude and phase responses with the discrete layer peeling (DLP) method. There are three important features of this technique: 1) the temporal differentiator has an arbitrary magnitude response and a controllable bandwidth; 2) the temporal differentiator can be designed and fabricated with an arbitrary differentiation order that is realized in a single FBG; 3) the required maximum index modulation of the FBG-based differentiator is largely decreased by using a Gaussian windowing function. The use of the proposed technique to design temporal differentiators with a differentiation order up to the fourth and with a bandwidth up to 500 GHz is studied. A proof-of-concept experiment is then carried out. A first- and a second-order temporal differentiator with a bandwidth of 25 GHz are experimentally demonstrated.

摘要

提出并研究了一种设计具有大带宽和任意微分阶数的全光纤时间微分器的新技术。所提出的时间微分器是一种特殊的光纤布拉格光栅(FBG),它通过离散层剥离(DLP)方法控制其幅度和相位响应来进行设计。该技术有三个重要特点:1)时间微分器具有任意幅度响应和可控带宽;2)时间微分器可以设计和制造出具有任意微分阶数,且在单个FBG中实现;3)通过使用高斯窗函数,基于FBG的微分器所需的最大折射率调制大大降低。研究了使用所提出的技术来设计微分阶数高达四阶且带宽高达500 GHz的时间微分器。然后进行了概念验证实验。实验证明了带宽为25 GHz的一阶和二阶时间微分器。

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