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Broadband spectroscopic lidar for SWIR/MWIR detection of gaseous pollutants in air

机译:用于SWIR / MWIR在空气中污染物的SWIR / MWIR检测的宽带光谱潮汐

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A broadband SWIR/MWIR spectroscopic lidar for detection of gaseous pollutants in air is presented for doing differential optical absorption spectroscopy (DOAS). One of the distinctive parts of the lidar is the use of a picosecond PPMgO:LN OPG (optical parametric generator) capable of generating broadband (10 to >100 nm FWHM) and tunable (1.5 to 3.9 μm) SWIR/MWIR light. The optical source layout and properties are presented, along with a description of the lidar breadboard. Results from indoor simulated typical operation of the lidar will be discussed, the operation consisting in emitting the broadband coherent light along a line of sight (LOS) and measuring the back-scattering returns from of a topographic feature or aerosols. A second distinctive part is the gated MCT-APD focal plane array used in the output plane of the grating spectrograph of the lidar system. The whole of the returned spectra is measured, within a very short time gate, at every pulse and at a resolution of a few tenths to a few nm. Light is collected by a telescope with variable focus for maximum coupling of the return to the spectrograph. Since all wavelengths are emitted and received simultaneously, the atmosphere is "frozen" during the path integrated measurement and hopefully reduces the baseline drift problem encountered in many broadband scanning approaches. The resulting path integrated gas concentrations are retrieved by fitting the molecular absorption features present in the measured spectra. The use of broadband pulses of light and of DOAS fitting procedures make it also possible to measure more than one gas at a time, including interferents. The OPG approach enables the generation of moderate FWHM continua with high spectral energy density and tunable to absorption features of a great number of molecules. Proposed follow-on work and applications will also be presented.
机译:介绍用于检测空气中气态污染物的宽带SWIR / MWIR光谱激光雷达,以进行差动光学吸收光谱(DOA)。 LIDAR的一个独特部件之一是使用PICOSecond PPMGO:LN OPG(光学参数发生器),能够产生宽带(10至> 100nm FWHM)和可调(1.5至3.9μm)SWIR / MWIR光。提出了光源布局和属性,以及LIDAR面包板的描述。由室内模拟LIDAR的典型操作的结果,将讨论沿着视线(LOS)发射宽带相干光并测量从地形特征或气溶胶的背散射返回的操作。第二独特部分是在激光雷达系统的光栅光谱仪的输出平面中使用的门控MCT-APD焦平面阵列。整个返回的光谱在每个脉冲处的非常短的时间栅极内测量,并以几十的分辨率为几个nm。望远镜通过望远镜收集光,可变焦点,以最大耦合返回光谱仪。由于同时发射和接收所有波长,因此在路径集成测量期间气氛是“冷冻”,并且希望降低许多宽带扫描方法中遇到的基线漂移问题。通过装配测量光谱中存在的分子吸收特征来检索所得路径集成气体浓度。使用宽带脉冲和DOAS拟合程序的使用使得可以一次测量多于一个气体,包括干扰。 OPG方法能够产生具有高光谱能量密度的中等FWHM连续功能,可调谐到大量分子的吸收特征。还将提出提出的后续工作和申请。

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