Asghari Mohammad H, Azaña José
Institut National de la Recherche Scientifique-Energie, Matériaux et Télécommunications, 800 de Gauchetière Ouest, Suite 6900, Montréal, Québec H5A 1K6, Canada.
Opt Lett. 2008 Jul 1;33(13):1548-50. doi: 10.1364/ol.33.001548.
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 Nth-order photonics integrator (N=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.
提出并数值研究了一种用于实现超快光波形任意阶时间积分的简单实用的全光纤设计。我们证明,使用具有适当设计的仅幅度光栅切趾分布的均匀周期光纤布拉格光栅(FBG),可以实现任何所需积分阶数的超快光子积分器。特别地,对于实现第N阶光子积分器(N = 1, 2, ...),光栅耦合强度必须根据光纤距离的(N - 1)次方变化。对于实现任何给定的积分阶数,这种方法所需的实际难度相同。所提出的积分装置在有限的时间窗口内工作,该时间窗口大约由FBG中的往返传播时间确定。使用易于实现的FBG可以实现能够在纳秒时间窗口内精确运行的超快任意阶全光积分器。