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Numerical Simulations of Single and Multiple Scattering by Fractal Ice ClustersWe consider the scattering model in the form of a vertically and horizontally homogeneous particulate slab of an arbitrary optical thickness composed of widely separated fractal aggregates built of small spherical ice monomers. The aggregates are generated by applying three different approaches, including simulated cluster-cluster aggregation (CCA) and diffusion-limited aggregation (DLA) procedures. Having in mind radar remote-sensing applications, we report and analyze the results of computations of the backscattering circular polarization ratio obtained using efficient superposition T-matrix and vector radiative-transfer codes. The computations have been performed at a wavelength of 12.6 cm for fractal aggregates with the following characteristics: monomer refractive index m=1.78+i0.003, monomer radius r=1 cm, monomer packing density p=0.2, overall aggregate radii R in the range 4<=R<=10 cm and fractal dimensions D(sub f) 2.5 and 3. We show that for aggregates generated with simulated CCA and DLA procedures, the respective values of the backscattering circular polarization ratio differ weakly for D(sub f) 2.5, but the differences can increase somewhat for D(sub f)3, especially in case of an optically semi-infinite medium. For aggregates with a spheroidal overall shape, the dependence of the circular polarization ratio on the cluster morphology can be quite significant and increases with increasing the aspect ratio of the circumscribing spheroid.
Document ID
20110022611
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Dlugach, Janna M.
(Academy of Sciences of the Ukraine Kiev, Ukraine)
Mishchenko, Michael I.
(NASA Goddard Inst. for Space Studies New York, NY, United States)
Mackowski, Daniel W.
(Auburn Univ. AL, United States)
Date Acquired
August 25, 2013
Publication Date
July 1, 2011
Publication Information
Publication: Journal of Quantitative Spectroscopy and Radiative Transfer
Publisher: Elsevier
Volume: 112
Issue: 11
ISSN: 0022-4073
Subject Category
Geosciences (General)
Report/Patent Number
GSFC.JA.5140.2011
Distribution Limits
Public
Copyright
Other

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