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Ultrasensitive detection of nitric oxide at 5.33 μm by using external cavity quantum cascade laser-based Faraday rotation spectroscopy

机译:基于外腔量子级联激光的法拉第旋转光谱法超灵敏地检测5.33μm的一氧化氮

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摘要

A transportable prototype Faraday rotation spectroscopic system based on a tunable external cavity quantum cascade laser has been developed for ultrasensitive detection of nitric oxide (NO). A broadly tunable laser source allows targeting the optimum Q3/2(3/2) molecular transition at 1875.81 cm−1 of the NO fundamental band. For an active optical path of 44 cm and 1-s lock-in time constant minimum NO detection limits (1σ) of 4.3 parts per billion by volume (ppbv) and 0.38 ppbv are obtained by using a thermoelectrically cooled mercury–cadmium–telluride photodetector and liquid nitrogen-cooled indium–antimonide photodetector, respectively. Laboratory performance evaluation and results of continuous, unattended monitoring of atmospheric NO concentration levels are reported.
机译:基于可调谐外腔量子级联激光器的可运输原型法拉第旋转光谱系统已被开发用于一氧化氮(NO)的超灵敏检测。广泛可调的激光源可将最佳Q3 / 2(3/2)分子跃迁瞄准NO基带的1875.81 cm-1。对于44 cm的有源光路和1 s锁定时间常数,使用热电冷却的汞-镉-碲化物光电探测器可获得的最小NO检出限(1σ)为十亿分之4.3(ppbv)和0.38 ppbv和液氮冷却的铟-锑化物光电探测器。报告了实验室性能评估和连续,无人值守的大气NO浓度监测结果。

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