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INTERFEROMETRIC ATMOSPHERIC REFRACTIVE-INDEX ENVIRONMENTAL MONITOR

机译:干涉大气折射率环境监测

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摘要

Long, open-path, outdoor interferometric measurement of the index of refraction as a function of wavelength (spectral refractivity) requires a number of innovations. These include active compensation for vibration and turbulence. The use of electronic compensation produces an electronic signal that is ideal for extracting data. This allows the appropriate interpretation of those data and the systematic and fast scanning of the spectrum by the use of bandwidths that are intermediate between lasers (narrow bandwidth) and white light (broad bandwidth). An Environmental Interferometer that incorporates these features should be extremely valuable in both pollutant detection and pollutant identification. Spectral refractivity measurements complement the information available from spectral absorption instruments (e.g., a Fourier-transform infrared spectrometer). The Environmental Interferometer currently uses an electronic compensating device with a 1-kHz response time, and therefore rapid spectral scans are feasible so that it is possible to monitor the time evolution of pollutant events. [References: 12]
机译:作为波长(光谱折射率)的折射率的折射率的长,开放式,室外干涉测量需要许多创新。这些包括用于振动和湍流的主动补偿。电子补偿的使用产生了一种用于提取数据的理想选择的电子信号。这允许通过使用在激光(窄带)和白光(宽带宽)之间中间的带宽来适当地解释这些数据和系统和快速扫描光谱。包含这些特征的环境干涉仪在污染物检测和污染物鉴定方面都非常有价值。光谱折射率测量补充了光谱吸收器械(例如傅立叶变换红外光谱仪)可获得的信息。环境干涉仪目前使用具有1 kHz响应时间的电子补偿装置,因此快速的光谱扫描是可行的,因此可以监视污染物事件的时间演变。 [参考:12]

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