Airborne and Ground-Based Measurement of Atmospheric Aerosol Backscatter at CO2 Laser Wavelengths

W. Jones
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Abstract

Measurement of atmospheric winds by lidars is dependent upon receiving sufficient reflected laser radiation to allow reliable velocity estimates. The signal intensity is in turn dependent on the "reflectivity" of the atmosphere. However, this "reflectivity" (more properly termed atmospheric backscatter coefficient) is not constant, but rather varies with geographic location, season, altitude, etc. There are several ways that the reflectivity may be estimated - extrapolation from visible and near-ir backscatter, extinction measurements, and particle sizing and prediction based on Mie theory.
CO2激光波长下大气气溶胶后向散射的机载和地面测量
激光雷达对大气风的测量依赖于接收到足够的反射激光辐射以进行可靠的速度估计。信号强度反过来又取决于大气的“反射率”。然而,这种“反射率”(更恰当地称为大气后向散射系数)不是恒定的,而是随地理位置、季节、海拔等而变化的。有几种方法可以估计反射率——从可见光和近红外背向散射推断,消光测量,以及基于Mie理论的粒度和预测。
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