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Fourier Transform Infrared Phase Shift Cavity Ring Down Spectrometer

机译:傅立叶变换红外相移腔衰荡光谱仪

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We report on our current status towards the development of a prototype Fourier transform infrared phase shift cavity ring down spectrometer (FTIR-PS-CRDS) system under a U.S. EPA SBIR contract. Our system uses the inherent wavelength-dependent modulation imposed by the FTIR on a broadband thermal source for the phase shift measurement. This spectrally-dependent phase shift is proportional to the spectrally-dependent ring down time, which is proportional to the losses of the cavity including those due to molecular absorption. Our approach is a broadband and spectral range enhancement to conventional CRDS which is typically done in the near IR at a single wavelength; at the same time our approach is a sensitivity enhancement to traditional FTIR owing to the long effective path of the resonant cavity. In this paper we present a summary of the theory including performance projections and the design details of the prototype FTIR-PS-CRDS system.
机译:我们将根据美国EPA SBIR合同报告我们对原型傅立叶变换红外相移腔衰荡光谱仪(FTIR-PS-CRDS)系统的开发现状。我们的系统使用FTIR在宽带热源上施加的固有的与波长有关的调制进行相移测量。这种与光谱有关的相移与与光谱有关的振铃时间成正比,该振铃时间与腔的损耗成正比,包括由于分子吸收引起的腔损耗。我们的方法是对常规CRDS的宽带和光谱范围增强,通常在单波长的近红外条件下完成;同时,由于谐振腔的有效路径较长,我们的方法是提高了传统FTIR的灵敏度。在本文中,我们对理论进行了总结,包括性能预测和原型FTIR-PS-CRDS系统的设计细节。

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