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Mid-Infrared Trace Gas Sensor Technology Based on Intracavity Quartz-Enhanced Photoacoustic Spectroscopy

机译:基于腔内石英增强光声光谱技术的中红外痕量气体传感器技术

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摘要

The application of compact inexpensive trace gas sensor technology to a mid-infrared nitric oxide (NO) detectoion using intracavity quartz-enhanced photoacoustic spectroscopy (I-QEPAS) is reported. A minimum detection limit of 4.8 ppbv within a 30 ms integration time was demonstrated by using a room-temperature, continuous-wave, distributed-feedback quantum cascade laser (QCL) emitting at 5.263 µm (1900.08 cm−1) and a new compact design of a high-finesse bow-tie optical cavity with an integrated resonant quartz tuning fork (QTF). The optimum configuration of the bow-tie cavity was simulated using custom software. Measurements were performed with a wavelength modulation scheme (WM) using a 2f detection procedure.
机译:报道了使用腔内石英增强光声光谱法(I-QEPAS)将紧凑,廉价的微量气体传感器技术应用于中红外一氧化氮(NO)检测技术。通过使用发射波长为5.263 µm(1900.08 cm-1)的室温连续波分布式反馈量子级联激光器(QCL),在30 ms积分时间内的最低检测限为4.8 ppbv。具有集成谐振石英音叉(QTF)的高级蝴蝶结光学谐振腔。使用定制软件模拟了领结腔的最佳配置。使用2f检测程序,通过波长调制方案(WM)进行测量。

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