Rao Gottipaty N, Karpf Andreas
Department of Physics, Adelphi University, Garden City, New York 11530, USA.
Appl Opt. 2011 May 1;50(13):1915-24. doi: 10.1364/AO.50.001915.
We report on the development of a new sensor for NO₂ with ultrahigh sensitivity of detection. This has been accomplished by combining off-axis integrated cavity output spectroscopy (OA-ICOS) (which can provide large path lengths of the order of several kilometers in a small volume cell) with multiple-line integrated absorption spectroscopy (MLIAS) (where we integrate the absorption spectra over a large number of rotational-vibrational transitions of the molecular species to further improve the sensitivity). Employing an external cavity quantum cascade laser operating in the 1601-1670 cm⁻¹ range and a high-finesse optical cavity, the absorption spectra of NO₂ over 100 transitions in the R band have been recorded. From the observed linear relationship between the integrated absorption versus concentration of NO₂ and the standard deviation of the integrated absorption signal, we report an effective sensitivity of detection of approximately 28 ppt (parts in 10¹²) for NO₂ To the best of our knowledge, this is among the most sensitive levels of detection of NO₂ to date.
我们报告了一种用于检测二氧化氮(NO₂)的超高灵敏度新型传感器的研发情况。这是通过将离轴集成腔输出光谱技术(OA - ICOS)(其可在小体积样品池中提供数千米量级的大光程)与多线积分吸收光谱技术(MLIAS)(我们在分子物种的大量转动 - 振动跃迁上对吸收光谱进行积分,以进一步提高灵敏度)相结合来实现的。利用工作在1601 - 1670 cm⁻¹范围内的外腔量子级联激光器和高精细度光学腔,记录了R波段中NO₂超过100个跃迁的吸收光谱。根据观察到的积分吸收与NO₂浓度之间的线性关系以及积分吸收信号的标准偏差,我们报告了NO₂的有效检测灵敏度约为28 ppt(万亿分之一)。据我们所知,这是迄今为止NO₂最灵敏的检测水平之一。