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Application of Fabry-Perot Interferometer for atmospheric HCl remote sensing

机译:法布里 - 珀罗干涉仪在大气HCL遥感中的应用

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One of the most important reservoirs of chlorine in the stratosphere is HCl, which sequesters active species and affects the rate of catalytic reactions with ozone. HCl presents a vibro-rotational absorption spectrum, in the near infrared (3-4 micron); for this reason it is possible to use a Fabry-Perot Interferometer (FPI) as a multiple narrow band filter with an appropriate free spectral range so its transmission bands overlap the CHl absorption lines. The model MAES (Mathematical Algorithm for Etalon Sensor) was develoepd for simulating the response of a sensor based on a plane FPI. This instrument utilises the direct sun radiation collected by a solar tracker to detect total path atmospheric HCl. MAES has been sued to study the main optical characteristics of the FPI (free spectral range, finesse, transmission lines number) and to optimise the instrumental response over a wide range of atmospheric conditions. The mAES simulations show that the remote sensing system is able to detect the atmospheric HCl column amount. Moreover MAES allows us to minimise the interfering gases contribution in the spectral region analysed. The main optical characteristics of an FPI and its deploymer for atmospheric sensing are discussed; the result of model simulation and the layout of the HCl sensor are presented as well as some preliminary laboratory tests.
机译:一平流层中的氯的最重要的储层的是盐酸,其螯合活性种,并影响与臭氧的催化反应的速率。盐酸呈现振动性旋转吸收光谱,在近红外(3-4微米);由于这个原因,可以使用一个法布里 - 珀罗干涉仪(FPI)作为多窄带滤波器与适当的自由光谱范围,以便它的传输频带重叠的CH1吸收线。该模型MAES(数学算法标准具传感器)中的溶液develoepd用于模拟基础上的平面FPI的传感器的响应。该仪器利用由太阳跟踪器收集以检测总路径大气压的HCl直接太阳辐射。 MAES已起诉研究FPI(自由光谱范围,精细度,传输线数目)的主光学特性和优化在宽范围的大气条件的仪器响应。的梅斯仿真表明,遥感系统能够检测大气HCl塔量。此外MAES允许我们减少的光谱区的干扰气体分析的贡献。的FPI并且其大气传感deploymer的主要光学特性进行了讨论;模型模拟和盐酸的布局传感器的结果被呈现,以及一些初步的实验室测试。

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