Multi-coupled single scattering method of solving vector radiative transfer equations

A new method of multi-coupled single scattering (MCSS) for solving a vector radiative transfer equation is de- veloped and made public on Internet. Recent solutions from Chandrasekhar's X-Y method is used to validate the MCSS's result, which shows high precision. The MCSS method is theoretically sim...

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Published inChinese physics B Vol. 21; no. 12; pp. 576 - 581
Main Author 孙斌 王涵 孙晓兵 洪津 张运杰
Format Journal Article
LanguageEnglish
Published 01.12.2012
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ISSN1674-1056
2058-3834
1741-4199
DOI10.1088/1674-1056/21/12/129501

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Abstract A new method of multi-coupled single scattering (MCSS) for solving a vector radiative transfer equation is de- veloped and made public on Internet. Recent solutions from Chandrasekhar's X-Y method is used to validate the MCSS's result, which shows high precision. The MCSS method is theoretically simple and clear, so it can be easily and credibly extended to the simulation of aerosol/cloud atmosphere's radiative properties, which provides effective support for research into polarized remote sensing.
AbstractList A new method of multi-coupled single scattering (MCSS) for solving a vector radiative transfer equation is de- veloped and made public on Internet. Recent solutions from Chandrasekhar's X-Y method is used to validate the MCSS's result, which shows high precision. The MCSS method is theoretically simple and clear, so it can be easily and credibly extended to the simulation of aerosol/cloud atmosphere's radiative properties, which provides effective support for research into polarized remote sensing.
A new method of multi-coupled single scattering (MCSS) for solving a vector radiative transfer equation is developed and made public on Internet. Recent solutions from Chandrasekhar's X-Y method is used to validate the MCSS's result, which shows high precision. The MCSS method is theoretically simple and clear, so it can be easily and credibly extended to the simulation of aerosol/cloud atmosphere's radiative properties, which provides effective support for research into polarized remote sensing.
Author 孙斌 王涵 孙晓兵 洪津 张运杰
AuthorAffiliation Key Laboratory of Optical Calibration and Characterization, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Science, Hefei 230031, China
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Notes A new method of multi-coupled single scattering (MCSS) for solving a vector radiative transfer equation is de- veloped and made public on Internet. Recent solutions from Chandrasekhar's X-Y method is used to validate the MCSS's result, which shows high precision. The MCSS method is theoretically simple and clear, so it can be easily and credibly extended to the simulation of aerosol/cloud atmosphere's radiative properties, which provides effective support for research into polarized remote sensing.
Sun Bin, Wang Han, Sun Xiao-Bing Hong Jin, and Zhang Yun-Jie Key Laboratory of Optical Calibration and Characterization, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Science, Hefei 230031, China
vector radiative transfer, multi-coupled single scattering method
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Snippet A new method of multi-coupled single scattering (MCSS) for solving a vector radiative transfer equation is de- veloped and made public on Internet. Recent...
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SubjectTerms Aerosols
Clouds
Internet
Mathematical analysis
MCSS
Radiative transfer
Remote sensing
Scattering
Simulation
Vectors (mathematics)
单次散射
求解方法
矢量
耦合
辐射传输方程
辐射特性
钱德拉塞卡
Title Multi-coupled single scattering method of solving vector radiative transfer equations
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