Optical properties of single mixed-phase aerosol particles |
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Authors: | Miroslav Kocifaj,Franti&scaron ek Kundrací k |
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Affiliation: | a Astronomical Institute, Slovak Academy of Sciences, Dúbravská cesta 9, 845 04 Bratislava, Slovak Republic b Department of Experimental Physics, FMPI, Comenius University, Mlynská dolina, 842 48 Bratislava, Slovak Republic c US Army Research Laboratory, AMSRD-ARL-CI-ES, 2800 Powder Mill Road, Adelphi, MD 20783-1197, USA |
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Abstract: | We examine the light scattering from wet aerosol particles whose core morphology is a random Gaussian sphere coated by different amounts of water. We compare the results with those calculated from a concentric-sphere particle and from a homogeneous-sphere particle whose refractive index is determined from the Bruggeman mixing rule. In nearly all cases the differences between those of the Gaussian-core and the concentric-sphere particles are small. The most significant differences are seen in calculations of the asymmetry parameters and the intensity and polarization phase functions. The results of the homogeneous-sphere particles vary significantly from those of the Gaussian-core particles, typically an order of magnitude greater than for the concentric-sphere particles. It is not uncommon to see differences of 10% in the efficiencies of large, homogeneous-sphere particles; whereas, in the intensity and polarization phase functions, differences of several tens of percent are not uncommon. |
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Keywords: | Light scattering Coated particles Gaussian particles Discrete dipole approximation Effective medium theory |
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