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Relative importance of multiple scattering by air molecules and aerosols in forming the atmospheric path radiance in the visible and near-infrared parts of the spectrum

机译:空气分子和气溶胶多重散射在形成光谱的可见光和近红外部分中的大气路径辐射中的相对重要性

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摘要

Single and multiple scattering by molecules or by atmospheric aerosols only (homogeneous scattering), and heterogeneous scattering by aerosols and molecules, are recorded in Monte Carlo simulations. It is shown that heterogeneous scattering (1) always contributes significantly to the path reflectance (rho(path)), (2) is realized at the expense of homogeneous scattering, (3) decreases when aerosols are absorbing, and (4) introduces deviations in the spectral dependencies of reflectances compared with the Rayleigh exponent and the aerosol angstrom exponent. The ratio of rho(path) to the Rayleigh reflectance for an aerosol-free atmosphere is linearly related to the aerosol optical thickness. This result provides a basis for a new scheme for atmospheric correction of remotely sensed ocean color observations. (C) 1998 Optical Society of America. [References: 23]
机译:在蒙特卡洛模拟中记录了由分子或仅由大气气溶胶引起的单次和多次散射(均匀散射),以及由气溶胶和分子引起的非均匀散射。结果表明,异质散射(1)始终对路径反射率(rho(path))贡献很大,(2)以均质散射为代价实现,(3)气溶胶吸收时减少,(4)引入偏差与瑞利指数和气溶胶埃指数相比,反射率的光谱依存性更高。在无气溶胶的大气环境中,rho(路径)与瑞利反射率之比与气溶胶光学厚度呈线性关系。这一结果为新的大气遥感颜色观测大气校正方案提供了基础。 (C)1998年美国眼镜学会。 [参考:23]

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