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中空光纤光热气体传感器的性能优化

Performance optimization of hollow-core fiber photothermal gas sensors.

作者信息

Lin Yuechuan, Jin Wei, Yang Fan, Tan Yanzhen, Ho Hoi Lut

出版信息

Opt Lett. 2017 Nov 15;42(22):4712-4715. doi: 10.1364/OL.42.004712.

Abstract

We report performance optimization of hollow-core photonic bandgap fiber (HC-PBF) photothermal (PT) gas sensors. The PT phase modulation efficiency of a CH filled HC-PBF (HC-1550-02) is found independent of the pump modulation frequency for up to ∼330  kHz, but starts to drop quickly to 10% of the maximum value at a couple of megahertz. With a 1.1 m long HC-PBF gas cell with angle-cleaved single-mode fiber/HC-PBF joints to reduce reflection and a modified 3×3 Sagnac interferometer with balanced detection for phase demodulation, a noise equivalent concentration of ∼67  ppbCH is achieved with a 1 s time constant, and it goes down to ∼18  ppb with 145 s integration time. The system has good long-term stability and exhibits signal fluctuations of <1% over a ∼5  h period.

摘要

我们报道了空心光子带隙光纤(HC-PBF)光热(PT)气体传感器的性能优化。发现填充CH的HC-PBF(HC-1550-02)的PT相位调制效率在高达约330 kHz的泵浦调制频率范围内与泵浦调制频率无关,但在几兆赫兹时开始迅速下降至最大值的10%。使用一个1.1米长的HC-PBF气体池,其具有角切割单模光纤/HC-PBF接头以减少反射,以及一个改进的用于相位解调的具有平衡检测的3×3萨格纳克干涉仪,在1秒的时间常数下实现了约67 ppbCH的噪声等效浓度,在145秒的积分时间下该浓度降至约18 ppb。该系统具有良好的长期稳定性,并且在约5小时的时间段内信号波动小于1%。

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