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Daytime measurements of atmospheric temperature profiles (2-15 km) by lidar utilizing Rayleigh-Brillouin scattering

机译:利用雷利-布里渊散射,通过激光雷达白天测量大气温度分布图(2-15 km)

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摘要

In this Letter, we report on a novel method for measuring atmospheric temperature profiles by lidar during daytime for heights of 2-15.3 km, with a vertical resolution of 0.3-2.2 km, using Rayleigh-Brillouin scattering. The measurements are performed by scanning a laser (λ = 355 nm) over a 12 GHz range and using a Fabry-Perot interferometer as discriminator. The temperature is derived by using a new analytical line shape model assuming standard atmospheric pressure conditions. Two exemplary temperature profiles resulting from measurements over 14 and 27 min are shown. A comparison with radiosonde temperature measurements shows reasonable agreement. In cloud-free conditions, the temperature difference reaches up to 5 K within the boundary layer, and is smaller than 2.5 K above. The statistical error of the derived temperatures is between 0.15 and 1.5 K.
机译:在这封信中,我们报告了使用瑞利-布里渊散射法通过激光雷达在白天测量高度为2-15.3 km,垂直分辨率为0.3-2.2 km的激光雷达测量大气温度剖面的一种新方法。通过在12 GHz范围内扫描激光(λ= 355 nm)并使用Fabry-Perot干涉仪作为鉴别器来执行测量。通过使用新的分析线形模型(假定标准大气压条件)得出温度。显示了在14分钟和27分钟内进行测量得出的两个示例性温度曲线。与探空仪温度测量结果的比较表明合理的一致性。在无云的条件下,边界层内的温差最高可达5 K,而在上方则小于2.5K。导出温度的统计误差在0.15和1.5 K之间。

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