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基于光纤光热干涉测量法的分布式气体传感

Distributed gas sensing with optical fibre photothermal interferometry.

作者信息

Lin Yuechuan, Liu Fei, He Xiangge, Jin Wei, Zhang Min, Yang Fan, Ho Hoi Lut, Tan Yanzhen, Gu Lijuan

出版信息

Opt Express. 2017 Dec 11;25(25):31568-31585. doi: 10.1364/OE.25.031568.

Abstract

We report the first distributed optical fibre trace-gas detection system based on photothermal interferometry (PTI) in a hollow-core photonic bandgap fibre (HC-PBF). Absorption of a modulated pump propagating in the gas-filled HC-PBF generates distributed phase modulation along the fibre, which is detected by a dual-pulse heterodyne phase-sensitive optical time-domain reflectometry (OTDR) system. Quasi-distributed sensing experiment with two 28-meter-long HC-PBF sensing sections connected by single-mode transmission fibres demonstrated a limit of detection (LOD) of ∼10 ppb acetylene with a pump power level of 55 mW and an effective noise bandwidth (ENBW) of 0.01 Hz, corresponding to a normalized detection limit of 5.5ppb⋅W/Hz. Distributed sensing experiment over a 200-meter-long sensing cable made of serially connected HC-PBFs demonstrated a LOD of ∼ 5 ppm with 62.5 mW peak pump power and 11.8 Hz ENBW, or a normalized detection limit of 312ppb⋅W/Hz. The spatial resolution of the current distributed detection system is limited to ∼ 30 m, but it is possible to reduce down to 1 meter or smaller by optimizing the phase detection system.

摘要

我们报道了首个基于光热干涉法(PTI)的分布式光纤痕量气体检测系统,该系统采用空心光子带隙光纤(HC-PBF)。在充满气体的HC-PBF中传播的调制泵浦光的吸收会沿光纤产生分布式相位调制,这由双脉冲外差相位敏感光时域反射仪(OTDR)系统进行检测。用单模传输光纤连接两个28米长的HC-PBF传感段进行的准分布式传感实验表明,在泵浦功率为55毫瓦且有效噪声带宽(ENBW)为0.01赫兹的情况下,乙炔的检测限(LOD)约为10 ppb,对应归一化检测限为5.5 ppb·W/Hz。在由串联连接的HC-PBF制成的200米长传感电缆上进行分布式传感实验表明,在峰值泵浦功率为62.5毫瓦且ENBW为11.8赫兹的情况下,LOD约为5 ppm,或归一化检测限为312 ppb·W/Hz。当前分布式检测系统的空间分辨率限制在约30米,但通过优化相位检测系统有可能降低到1米或更小。

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