光谱学
光学
吸收光谱法
吸收(声学)
分光计
强度(物理)
材料科学
可调谐激光吸收光谱技术
谱线
信号(编程语言)
激光器
物理
计算机科学
可调谐激光器
量子力学
天文
程序设计语言
作者
Ryan K. Cole,Amanda S. Makowiecki,Nazanin Hoghooghi,Gregory B. Rieker
出处
期刊:Optics Express
[The Optical Society]
日期:2019-12-13
卷期号:27 (26): 37920-37920
被引量:88
摘要
The accuracy of quantitative absorption spectroscopy depends on correctly distinguishing molecular absorption signatures in a measured transmission spectrum from the varying intensity or 'baseline' of the light source. Baseline correction becomes particularly difficult when the measurement involves complex, broadly absorbing molecules or non-ideal transmission effects such as etalons. We demonstrate a technique that eliminates the need to account for the laser intensity in absorption spectroscopy by converting the measured transmission spectrum of a gas sample to a modified form of the time-domain molecular free induction decay (m-FID) using a cepstral analysis approach developed for audio signal processing. Much of the m-FID signal is temporally separated from and independent of the source intensity, and this portion can be fit directly with a model to determine sample gas properties without correcting for the light source intensity. We validate the new approach in several complex absorption spectroscopy scenarios and discuss its limitations. The technique is applicable to spectra obtained with any absorption spectrometer and provides a fast and accurate approach for analyzing complex spectra.
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