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An Experimental and Numerical Study of the Light Scattering Properties of Ice Crystals with Black Carbon Inclusions

Journal of Quantitative Spectroscopy and Radiative Transfer(2018)SCI 3区

Sandia Natl Labs

Cited 5|Views15
Abstract
We investigate the optical properties of ice crystals nucleated on atmospheric black carbon (BC). The parameters examined in this study are the shape of the ice crystal, the volume fraction of the BC inclusion, and its location inside the crystal. We report on new spectrometer measurements of forward scattering and backward polarization from ice crystals nucleated on BC particles and grown under laboratory-controlled conditions. Data from the Cloud and Aerosol Spectrometer with Polarization (CASPOL) are used for direct comparison with single-particle calculations of the scattering phase matrix. Geometrical optics and discrete dipole approximation techniques are jointly used to provide the best compromise of flexibility and accuracy over a broad range of size parameters. Together with the interpretation of the trends revealed by the CASPOL measurements, the numerical results confirm previous reports on absorption cross-section magnification in the visible light range. Even taking into account effects of crystal shape and inclusion position, the ratio between absorption cross-section of the compound particle and the absorption cross-section of the BC inclusion alone (the absorption magnification) has a lower bound of 1.5; this value increases to 1.7 if the inclusion is centered with respect to the crystal. The simple model of BC-ice particle presented here also offers new insights on the effect of the relative position of the BC inclusion with respect to the crystal's outer surfaces, the shape of the crystal, and its size. (C) 2018 Elsevier Ltd. All rights reserved.
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Key words
Black carbon,Ice crystal,Absorption magnification,Spectrometer data analysis,Discrete dipole approximation (DDA),Geometrical optics (GO)
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要点】:本论文通过实验和数值模拟研究了含黑碳杂质的冰晶的光散射特性,发现黑碳的大小可能影响冰晶的大小和形态,并证实了黑碳杂质吸收增强因子至少为1.5倍,且冰晶形状简化成完美球形会导致吸收增强因子的极大变化。

方法】:采用实验方法获取了在控制条件下,冰晶在黑碳颗粒上成核时的前向散射和后向偏振数据,并通过几何光学和离散偶极近似技术计算了散射相矩阵,进行了直接比较。

实验】:实验使用了黑碳颗粒作为冰晶成核剂,在特定条件下观察了冰晶的生长和光散射特性,得出了含黑碳杂质的冰晶散射特性数据。结果显示,黑碳颗粒的大小对冰晶的成核和生长有显著影响,并且非球形黑碳颗粒会导致吸收增强因子的显著变化。