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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Laboratory evaluation of the scattering matrix elements of mineral dust particles from 176.0° up to 180.0°-exact backscattering angle
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Laboratory evaluation of the scattering matrix elements of mineral dust particles from 176.0° up to 180.0°-exact backscattering angle

机译:矿物粉尘颗粒散射基质元素的实验室评价从176.0°到180.0° - 另外的后散角度

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摘要

In this paper, the scattering matrix elements of an ensemble of mineral dust particles are for the first time evaluated in laboratory for scattering angles ranging from 176.0° to the π-backscattering angle of 180.0° with a high angular resolution of 0.4° and compared with the outputs of T-matrix numerical code. Elastic light scattering is addressed at near and exact backscattering angles with a newly-built laboratory polarimeter, validated on spherical particles following the Lorenz–Mie theory. The ratiosfij(θ)?=?Fij(θ)/F11(θ) of the scattering matrix elements of mineral dust particles are then precisely evaluated in laboratory from 176.0° up to 180.0° with a 0.4° angular resolution (even 0.2° between 179.2° and 180.0°), which is new. When approaching the π-backscattering angle, the slopes of the scattering matrix elements are almost zero, as theoretically predicted by Hovenier and Guirado [17]. Moreover, our laboratory findings are found in good agreement with the outputs of the T-matrix numerical code, showing the ability of the spheroidal model to describe light-scattering by mineral dust also from near to exact backscattering. Atmospheric implications for polarization lidar retrievals are then discussed in terms of linear and circular depolarization ratios for mineral dust. These results, which complement other existing light scattering experiments, may be used to extrapolate light scattering by mineral dust particles up the π-backscattering angle, which is useful in radiative transfer and climatology, in which backscattering is involved.
机译:在本文中,矿物粉尘颗粒的集合的散射基质元素是在实验室中第一次评估的,用于散射角度从176.0°到180.0°的π-反向散射角度,高角度分辨率为0.4° T矩阵数值代码的输出。弹性光散射在近乎和精确的背散射角度,具有新建的实验室偏振仪的近似和精确的反向散射角,在Lorenz-Mie理论之后的球形颗粒上验证。然后在实验室中精确地评估散射基质元素的Ratiosfij(θ)?=ΔFij(θ)/ f11(θ),在实验室中从176.0°达到180.0°,在0.4°角度分辨率下(均匀0.2°) 179.2°和180.0°),这是新的。当接近π-反向散射角度时,散射矩阵元素的斜率几乎为零,如Hovenier和Guirado的理论上预测[17]。此外,我们的实验室发现与T型矩阵数值代码的输出良好,显示了球形模型的能力,用于描述矿物粉尘的光散射,也来自近乎精确的反向散射。然后根据用于矿物粉尘的线性和圆形去极化比率来讨论用于偏振激光雷达检索的大气影响。这些结果补充了其他现有的光散射实验,可用于通过矿物粉尘颗粒外推π-反向散射角,这可用于辐射转移和气候学,其中涉及反散射。

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