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使用超连续谱辐射源对多种痕量气体进行腔增强吸收光谱分析。

Cavity enhanced absorption spectroscopy of multiple trace gas species using a supercontinuum radiation source.

作者信息

Langridge J M, Laurila T, Watt R S, Jones R L, Kaminski C F, Hult J

机构信息

Department of Chemistry, University of Cambridge, Lensfield Road,Cambridge CB2 1EW, UK.

出版信息

Opt Express. 2008 Jul 7;16(14):10178-88. doi: 10.1364/oe.16.010178.

Abstract

Supercontinuum radiation sources are attractive for spectroscopic applications owing to their broad wavelength coverage, which enables spectral signatures of multiple species to be detected simultaneously. Here we report the first use of a supercontinuum radiation source for broadband trace gas detection using a cavity enhanced absorption technique. Spectra were recorded at bandwidths of up to 100 nm, encompassing multiple absorption bands of H(2)O, O(2) and O(2)-O(2). The same instrument was also used to make quantitative measurements of NO(2) and NO(3). For NO(3) a detection limit of 3 parts-per-trillion in 2 s was achieved, which corresponds to an effective 3sigma sensitivity of 2.4 x 10(-9) cm(-1)Hz(-1/2). Our results demonstrate that a conceptually simple and robust instrument is capable of highly sensitive broadband absorption measurements.

摘要

超连续谱辐射源因其宽波长覆盖范围而在光谱应用中颇具吸引力,这使得能够同时检测多种物质的光谱特征。在此,我们报告首次使用超连续谱辐射源,通过腔增强吸收技术进行宽带痕量气体检测。光谱记录带宽高达100纳米,涵盖了H₂O、O₂和O₃的多个吸收带。同一仪器还用于对NO₂和NO₃进行定量测量。对于NO₃,在2秒内实现了3万亿分之一的检测限,这对应于2.4×10⁻⁹厘米⁻¹赫兹⁻¹/²的有效3σ灵敏度。我们的结果表明,一种概念上简单且坚固的仪器能够进行高灵敏度的宽带吸收测量。

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