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Proposal for arbitrary-order temporal integration of ultrafast optical signals using a single uniform-period fiber Bragg grating

机译:关于使用单个均匀周期光纤布拉格光栅对超快光信号进行任意阶次时间积分的提案

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摘要

A simple and practical all-fiber design for implementing arbitrary-order temporal integration of ultrafast optical waveforms is proposed and numerically investigated. We demonstrate that an ultrafast photonics integrator of any desired integration order can be implemented using a uniform-period fiber Bragg grating (FBG) with a properly designed amplitude-only grating apodization profile. In particular, the grating coupling strength must vary according to the (N-1) power of the fiber distance for implementing an N th-order photonics integrator (N(velence)1,2, ...). This approach requires the same level of practical difficulty for realizing any given integration order. The proposed integration devices operate over a limited time window, which is approximately fixed by the round-trip propagation time in the FBG. Ultrafast arbitrary-order all-optical integrators capable of accurate operation over nanosecond time windows can be implemented using readily feasible FBGs.
机译:提出了一种简单实用的全光纤设计,用于实现超快速光波形的任意阶次时间积分。我们证明,可以使用均周期光纤布拉格光栅(FBG)以及适当设计的仅振幅光栅变迹轮廓来实现任何所需积分阶数的超快光子积分器。特别地,光栅耦合强度必须根据光纤距离的(N-1)次幂而变化,以实现N阶光子积分器(N(velence)1,2,...)。这种方法需要相同水平的实践难度才能实现任何给定的集成顺序。提出的集成设备在有限的时间范围内运行,该时间范围大约由FBG中的往返传播时间固定。可以使用容易实现的FBG来实现能够在纳秒级时间窗口内精确运行的超快任意阶全光学积分器。

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