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Sub-ppm-Level Ammonia Detection Using Photoacoustic Spectroscopy with an Optical Microphone Based on a Phase Interferometer

机译:使用基于相位干涉仪的光学麦克风通过光声光谱法检测亚ppm级氨气

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摘要

A sensitive optical microphone for photoacoustic spectroscopy based on the common path topology of a fibre laser Doppler vibrometer (FLDV) using phase-generated carrier demodulation and a slim diaphragm as an acoustic wave transducer was demonstrated. A resonant gas cell was adapted to enhance gas-detection performance and simultaneously provide efficient cancellation of the window background acoustic signal. Ammonia (NH3) was selected as the target gas. The absorption line was experimentally identified using a distributed feedback laser diode emitting at 1530 nm. The linearity and sensitivity of the gas sensor were measured using wavelength modulation spectroscopy with second harmonic detection. A Teflon diaphragm was used to implement the optical microphone, along with the FLDV, showing a minimum detectable pressure of 79.5 μPa/Hz1/2. The noise-equivalent absorption sensitivity for NH3 detection at the absorption line at 1531.7 nm was 1.85 × 10−8 W cm−1 Hz−1/2, and the limit of detection was 785 ppbv.
机译:演示了一种基于光波多普勒振动计(FLDV)的公共路径拓扑结构,用于光声光谱的灵敏光学麦克风,该技术使用相位产生的载波解调和细长的振膜作为声波换能器。谐振气室适合于增强气体检测性能,并同时有效消除窗口背景声信号。选择氨气(NH3)作为目标气体。通过使用在1530 nm处发射的分布式反馈激光二极管,实验确定了吸收线。使用带有二次谐波检测的波长调制光谱仪测量气体传感器的线性度和灵敏度。使用聚四氟乙烯膜片和FLDV来实现光学麦克风,显示出最低可检测压力为79.5μPa/ Hz 1/2 。在1531.7 nm处的吸收线处检测NH3的等效噪声吸收灵敏度为1.85×10 -8 W cm -1 Hz -1/2 ,检测限为785 ppbv。

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