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1064 nm rotational Raman lidar for particle extinction and lidar-ratio profiling: cirrus case study

机译:1064 nm旋转拉曼激光雷达用于消光和激光雷达比例分析:卷云案例研究

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摘要

For the first time, vertical profiles of the 1064 nm particle extinction coefficient obtained from Raman lidar observations at 1058 nm (nitrogen and oxygen rotational Raman backscatter) are presented. We applied the new technique in the framework of test measurements and performed several cirrus observations of particle backscatter and extinction coefficients, and corresponding extinctiont-o-backscatter ratios at the wavelengths of 355, 532, and 1064 nm. The cirrus backscatter coefficients were found to be equal for all three wavelengths keeping the retrieval uncertainties in mind. The multiple-scattering-corrected cirrus extinction coefficients at 355 nm were on average about 20-30% lower than the ones for 532 and 1064 nm. The cirrus-mean extinction-to-backscatter ratio (lidar ratio) was 31 +/- 5 sr (355 nm), 36 +/- 5 sr (532 nm), and 38 +/- 5 sr (1064 nm) in this single study. We further discussed the requirements needed to obtain aerosol extinction profiles in the lower troposphere at 1064 nm with good accuracy (20% relative uncertainty) and appropriate temporal and vertical resolution.
机译:首次展示了从拉曼激光雷达在1058 nm处观察到的1064 nm颗粒消光系数的垂直剖面(氮气和氧气旋转拉曼反向散射)。我们在测试测量的框架中应用了这项新技术,并在355、532和1064 nm波长处对粒子的反向散射和消光系数以及相应的消光-o-反向散射比进行了卷云观测。发现所有三个波长的卷云反向散射系数均相等,同时牢记了检索的不确定性。 355 nm处的多散射校正的卷云消光系数平均比532和1064 nm的消光系数平均低约20-30%。在此情况下,卷云平均消光与背向散射比(激光比)为31 +/- 5 sr(355 nm),36 +/- 5 sr(532 nm)和38 +/- 5 sr(1064 nm)。单项研究。我们进一步讨论了在低对流层获得1064 nm处的气溶胶消光曲线的要求,这些要求具有良好的精度(相对不确定度为20%)以及适当的时间和垂直分辨率。

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