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Analytical method to find the optimal parameters for gas detectors based on correlation spectroscopy using a Fabry-Perot interferometer

机译:基于法布里-珀罗干涉仪的相关光谱法为气体探测器寻找最佳参数的分析方法

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摘要

Several designs of infrared sensors use a Fabry-Perot interferometer (FPI) to modulate the incident light.In this work we analyze the particular case where the FPI fringes are matched with very well defined rovibrational absorption lines of a target molecule such as CO_(2), CO, N_(2)O, or CH_(4). In this kind of sensor, modulation is induced by scanning the FPI cavity length over one half of the reference wavelength. Here we present an analytical method based on the Fourier transform, which simplifies the procedure to determine the sensor response. Furthermore, this method provides a simple solution to finding the optimal FPI cavity length and mirror reflectivity. It is shown that FPI mirrors with surprisingly low reflectivity (<50percent) are generally the optimum choice for target gases at atmospheric pressure. Finally, experimental measurements and simulation results are presented.
机译:红外传感器的几种设计都使用Fabry-Perot干涉仪(FPI)来调制入射光,在这项工作中,我们分析了FPI条纹与目标分子(例如CO_(2) ),CO,N_(2)O或CH_(4)。在这种传感器中,通过在参考波长的一半范围内扫描FPI腔的长度来诱导调制。在这里,我们提出了一种基于傅立叶变换的分析方法,该方法简化了确定传感器响应的过程。此外,该方法为找到最佳FPI腔长度和镜面反射率提供了简单的解决方案。结果表明,具有惊人低反射率(<50%)的FPI反射镜通常是大气压下目标气体的最佳选择。最后,给出了实验测量结果和仿真结果。

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