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Effect of molecular anisotropy on the intensity and degree of polarization of light scattered from model atmospheres

机译:分子各向异性对模型大气散射光强度和偏振度的影响

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摘要

Computations of the intensity, flux, degree of polarization, and the positions of neutral points are presented for models of the terrestrial gaseous and hazy atmospheres by incorporating the molecular anisotropy due to air in the Rayleigh scattering optical thickness and phase matrix. Molecular anisotropy causes significant changes in the intensity, flux and the degree of polarization of the scattered light. The positions of neutral points do not change significantly. When the Rayleigh scattering optical thickness is kept constant and the molecular anisotropy factor is included only in the Rayleigh phase matrix, the flux does not change and the intensity and positions of neutron points change by a small amount. The changes in the degree of polarization are still significant.
机译:通过将由于空气引起的分子各向异性纳入瑞利散射光学厚度和相矩阵,为陆地气态和朦胧气氛模型提供了强度,通量,极化度和中性点位置的计算。分子各向异性导致散射光的强度,通量和偏振度发生重大变化。中性点的位置变化不大。当瑞利散射光学厚度保持恒定且分子各向异性因子仅包含在瑞利相矩阵中时,通量不变,中子点的强度和位置也有少量变化。极化程度的变化仍然很大。

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