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利用激光量子相位噪声的相敏相关光时域反射仪。

Phase-sensitive correlation optical time-domain reflectometer using quantum phase noise of laser light.

作者信息

Arias A, Shlyagin M G, Miridonov S V, Manuel Rodolfo Martinez

出版信息

Opt Express. 2015 Nov 16;23(23):30347-56. doi: 10.1364/OE.23.030347.

Abstract

We propose and experimentally demonstrate a simple approach to realize a phase-sensitive correlation optical time-domain reflectometer (OTDR) suitable for detection and localization of dynamic perturbations along a single-mode optical fiber. It is based on the quantum phase fluctuations of a coherent light emitted by a telecom DFB diode laser. Truly random probe signals are generated by an interferometer with the optical path difference exceeding the coherence length of the laser light. Speckle-like OTDR traces were obtained by calculating cross-correlation functions between the probe light and the light intensity signals returned back from the sensing fiber. Perturbations are detected and localized by monitoring time variations of correlation amplitude along the fiber length. Results of proof-of-concept experimental testing are presented using an array of ultra-low-reflectivity fiber Bragg gratings as weak reflectors.

摘要

我们提出并通过实验证明了一种简单的方法,以实现一种适用于检测和定位沿单模光纤动态扰动的相敏相关光时域反射仪(OTDR)。它基于电信分布反馈(DFB)二极管激光器发射的相干光的量子相位涨落。真正随机的探测信号由光程差超过激光相干长度的干涉仪产生。通过计算探测光与从传感光纤返回的光强信号之间的互相关函数,获得了类似散斑的OTDR迹线。通过监测沿光纤长度的相关幅度的时间变化来检测和定位扰动。使用超低反射率光纤布拉格光栅阵列作为弱反射器,给出了概念验证实验测试的结果。

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