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Cavity ringdown spectroscopic detection of nitric oxide with a continuous-wave quantum-cascade laser

机译:连续波量子级联激光器的腔衰荡光谱法检测一氧化氮

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摘要

A spectroscopic gas sensor for nitric oxide (NO) detection based on a cavity ringdown technique was designed and evaluated. A cw quantum-cascade distributed-feedback laser operating at 5.2 μm was used as a tunable single-frequency light source. Both laser-frequency tuning and abrupt interruptions of the laser radiation were performed through manipulation of the laser current. A single ringdown event sensitivity to absorption of 2.2×10~(-8) cm~(-1) was achieved. Measurements of parts per billion (ppb) NO concentrations in N_(2) with a 0.7-ppb standard error for a data collection time of 8 s have been performed. Future improvements are discussed that would allow quantification of NO in human breath.
机译:设计并评估了基于腔衰荡技术的用于检测一氧化氮(NO)的光谱气体传感器。使用工作在5.2μm的cw量子级联分布反馈激光器作为可调谐单频光源。激光频率调谐和激光辐射的突然中断都是通过操纵激光电流来执行的。单次衰荡事件对吸收的灵敏度为2.2×10〜(-8)cm〜(-1)。已对N_(2)中的十亿分之一(ppb)NO浓度进行了测量,数据收集时间为8 s,标准误差为0.7 ppb。讨论了未来的改进方法,可以对人的呼吸中的NO进行定量。

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