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NUMERICAL SIMULATIONS OF POLARIZED SCATTERING FROM RANDOM CLUSTERS OF SPATIALLY-ORENTED, NON-SPHERICAL SCATTERS
引用本文:Huang Xingzhong Jin Yaqiu(Department of Electronics Engineering Wave Scattering and Remote Sensing Centre,Aidan University,Shanghai 200433). NUMERICAL SIMULATIONS OF POLARIZED SCATTERING FROM RANDOM CLUSTERS OF SPATIALLY-ORENTED, NON-SPHERICAL SCATTERS[J]. 电子科学学刊(英文版), 1998, 15(3): 267-273. DOI: 10.1007/s11767-998-0039-2
作者姓名:Huang Xingzhong Jin Yaqiu(Department of Electronics Engineering Wave Scattering and Remote Sensing Centre  Aidan University  Shanghai 200433)
作者单位:Department of Electronics Engineering Wave Scattering and Remote Sensing Centre,Aidan University,Shanghai 200433
基金项目:Supported by the National Natural Science Foundation of China the Shanghai Centre for Applied Physics,the Shanghai Research and Development Foundation of Applied materials
摘    要:Employing multiple scattering formulation of T-matrix method, numerical simulations are developed and applied to polarized scattering from random clusters of spatially-oriented, non-spherical particles. Polarized scattering is numerically presented for the functional dependence on particle shape, size, spatial distribution and orientation, and other physical parameters. Numerical calculations of backscattering from randomly clustered particles are well compared with that from independent particles and clusters. It can be seen that spatial distribution and orientation of non-spherical particles can have significant effect on scattering.


Numerical simulations of polarized scattering from random clusters of spatially-orented, non-spherical scatters
Xingzhong Huang,Yaqiu Jin. Numerical simulations of polarized scattering from random clusters of spatially-orented, non-spherical scatters[J]. Journal of Electronics, 1998, 15(3): 267-273. DOI: 10.1007/s11767-998-0039-2
Authors:Xingzhong Huang  Yaqiu Jin
Affiliation:(1) Department of Electronics Engineering Wave Scattering and Remote Sensing Centre, Fudan University, 200433 Shanghai
Abstract:Employing multiple scattering formulation of T-matrix method, numerical simulations are developed and applied to polarized scattering from random clusters of spatially-oriented, non-spherical particles. Polarized scattering is numerically presented for the functional dependence on particle shape, size, spatial distribution and orientation, and other physical parameters. Numerical calculations of backscattering from randomly clustered particles are well compared with that from independent particles and clusters. It can be seen that spatial distribution and orientation of non-spherical particles can have significant effect on scattering.
Keywords:Random distribution  Non-spherical particles  Multiple scattering
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