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Information content of multiwavelength lidar data with respect to microphysical particle properties derived from eigenvalue analysis

机译:基于特征值分析的多波长激光雷达数据有关微物理粒子特性的信息内容

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摘要

The multiwavelength Raman lidar technique in combination with sophisticated inversion algorithms has been recognized as a new tool for deriving information about the microphysical properties of atmospheric aerosols. The input optical parameter sets, provided by respective aerosol Raman lidars, are at the theoretical lower limit at which these inversion algorithms work properly. For that reason there is ongoing intense discussion of the accuracy of these inversion methods and the possibility of simultaneous retrieval of the particle size distribution and the complex refractive index. We present results of the eigenvalue analysis, used to study the information content of multiwavelength lidar data with respect to microphysical particle properties. Such an analysis provides, on a rather mathematical basis, more insight into the limitations of these inversion algorithms regarding the accuracy of the retrieved parameters. We show that the effective radius may be retrieved to 50% accuracy and the real and imaginary part of the complex refractive index to +/- 0.05 and +/- 0.005i, if the imaginary part is < 0.02i. These results are in accordance with the classic approach of simulation studies with synthetic particle size distributions. Major difficulties are found with a particle effective radius of < 0.15 mu m. In that case the complex refractive index may not be derived with sufficient accuracy. The eigenvalue analysis also shows that the accuracy of the derived parameters degrades if the imaginary part is > 0.02i, Furthermore it shows the importance of the simultaneous use of backscatter and extinction coefficients for the retrieval of microphysical parameters. (c) 2005 Optical Society of America.
机译:多波长拉曼激光雷达技术与复杂的反演算法相结合,已被公认为是获取有关大气气溶胶微物理性质信息的新工具。由各个气溶胶拉曼激光雷达提供的输入光学参数集处于这些反演算法正常工作的理论下限。因此,对于这些反演方法的准确性以及同时获取粒度分布和复折射率的可能性进行了激烈的讨论。我们介绍了特征值分析的结果,用于研究多波长激光雷达数据相对于微物理粒子特性的信息内容。这样的分析在相当数学的基础上提供了更多关于这些反演算法在检索参数准确性方面的局限性的见解。我们表明,如果虚部<0.02i,则有效半径可以检索到50%的精度,复折射率的实部和虚部为+/- 0.05和+/- 0.005i。这些结果与合成颗粒大小分布的经典模拟研究方法一致。发现有效颗粒半径小于0.15微米的主要困难。在那种情况下,可能无法以足够的精度得出复数折射率。特征值分析还表明,如果虚部> 0.02i,则导出参数的精度会降低,此外,它还显示了同时使用反向散射和消光系数来获取微物理参数的重要性。 (c)2005年美国眼镜学会。

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