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Numerical Simulation of Scattered Light Polarization in a Developing Convective Cloud for Millimeter Wavelengths

机译:毫米波发展中的对流云中散射光偏振的数值模拟

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The optical characteristics of scattered light polarization in a developing convective cloud for millimeter wavelengths are numerically studied using the convection jet model and Stokes parameters. The analysis revealed that the value of all polarization forms does not depend on the cloud droplet spectrum and wavelength in the lower layers of a convective cloud. As the cloud droplet size increases and the wavelength decreases, the polarizations of all forms vary greatly and may have several maxima. It is also demonstrated that the degree of partial polarization may make no sense in the Rayleigh region at the certain values of polarization parameters.
机译:使用对流射流模型和斯托克斯参数,数值研究了正在发展的毫米波对流云中散射光偏振的光学特性。分析显示,所有极化形式的值均不取决于对流云层下层的云滴谱和波长。随着云滴尺寸的增加和波长的减小,所有形式的偏振变化很大,并且可能有多个最大值。还证明了在极化参数的某些值下,在瑞利区域中部分极化的程度可能没有意义。

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