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具有高处理速度和长操作时间窗口相结合的光子时间积分新设计。

New design for photonic temporal integration with combined high processing speed and long operation time window.

作者信息

Asghari Mohammad H, Park Yongwoo, Azaña José

机构信息

Institut National de la Recherche Scientifique-Energie, Matériaux et Télécommunications (INRS-EMT), Montreal, Québec, Canada.

出版信息

Opt Express. 2011 Jan 17;19(2):425-35. doi: 10.1364/OE.19.000425.

Abstract

We propose and experimentally prove a novel design for implementing photonic temporal integrators simultaneously offering a high processing bandwidth and a long operation time window, namely a large time-bandwidth product. The proposed scheme is based on concatenating in series a time-limited ultrafast photonic temporal integrator, e.g. implemented using a fiber Bragg grating (FBG), with a discrete-time (bandwidth limited) optical integrator, e.g. implemented using an optical resonant cavity. This design combines the advantages of these two previously demonstrated photonic integrator solutions, providing a processing speed as high as that of the time-limited ultrafast integrator and an operation time window fixed by the discrete-time integrator. Proof-of-concept experiments are reported using a uniform fiber Bragg grating (as the original time-limited integrator) connected in series with a bulk-optics coherent interferometers' system (as a passive 4-points discrete-time photonic temporal integrator). Using this setup, we demonstrate accurate temporal integration of complex-field optical signals with time-features as fast as 6 ps, only limited by the processing bandwidth of the FBG integrator, over time durations as long as ~200 ps, which represents a 4-fold improvement over the operation time window (50 ps) of the original FBG integrator.

摘要

我们提出并通过实验证明了一种用于实现光子时间积分器的新颖设计,该设计同时具备高处理带宽和长操作时间窗口,即大的时间带宽积。所提出的方案基于将一个时间受限的超快光子时间积分器(例如使用光纤布拉格光栅(FBG)实现)与一个离散时间(带宽受限)光学积分器(例如使用光学谐振腔实现)串联连接。这种设计结合了这两种先前已证明的光子积分器解决方案的优点,提供了与时间受限的超快积分器一样高的处理速度以及由离散时间积分器确定的操作时间窗口。报道了使用均匀光纤布拉格光栅(作为原始的时间受限积分器)与体光学相干干涉仪系统(作为无源四点离散时间光子时间积分器)串联的概念验证实验。使用此设置,我们展示了对具有快至约6 ps时间特征的复场光信号进行精确的时间积分,时间持续长达约200 ps,这比原始FBG积分器的操作时间窗口(约50 ps)提高了4倍,且仅受FBG积分器的处理带宽限制。

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