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Detection of nitrogen dioxide by cavity attenuated phase shift spectroscopy

机译:腔衰减相移光谱法检测二氧化氮

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We present initial results obtained from an optical absorption sensor for the monitoring of ambient atmospheric nitrogen dioxide concentrations (0-200 ppb). This sensor utilizes cavity attenuated phase shift spectroscopy, a technology related to cavity ringdown spectroscopy. A modulated broadband incoherent light source (a 430-nm LED) is coupled to an optically resonant cavity formed by two high-reflectivity mirrors. The presence of NO2 in the cell causes a phase shift in the signal received by a photodetector that is proportional to the NO2 concentration. The sensor, which employed a 0.5-m cell, was shown to have a sensitivity of 0.3 ppb in the photon (shot) noise limit. Improvements in the optical coupling of the LED to the resonant cavity would allow the sensor to reach this limit with integration times of 10 s or less (corresponding to a noise equivalent absorption coefficient of < 1 x 10(-8) cm(-1) Hz(-1/2)). Over a 2-day-long period of ambient atmospheric monitoring, a comparison of the sensor with an extremely accurate and precise tunable diode laser-based absorption spectrometer showed that the CAPS-based instrument was able to reliably and quantitatively measure both large and small fluctuations in the ambient nitrogen dioxide concentration.
机译:我们介绍了从光学吸收传感器获得的监测大气中二氧化氮浓度(0-200 ppb)的初步结果。该传感器利用腔衰减相移光谱技术,这是一种与腔衰荡光谱技术相关的技术。调制宽带非相干光源(430 nm LED)耦合到由两个高反射镜形成的光学谐振腔。电池中NO2的存在会导致光电探测器接收到的信号中与NO2浓度成比例的相移。该传感器采用了一个0.5 m的单元,在光子(散粒)噪声极限中的灵敏度为0.3 ppb。 LED与谐振腔的光学耦合的改进将允许传感器以10 s或更短的积分时间达到此极限(对应于噪声等效吸收系数<1 x 10(-8)cm(-1) Hz(-1/2))。在为期2天的环境大气监测期间,将传感器与极其准确和精确的基于可调谐二极管激光的吸收光谱仪进行比较,结果表明基于CAPS的仪器能够可靠,定量地测量大小波动在环境中的二氧化氮浓度。

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