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The Increase of Efficiency of Numerical Solution of theVectorial Radiative Transfer Equation Based upon theSubtraction of the Anisotropic Part

机译:基于各向异性零件的基于透明透射转移方程数值解的效率提高

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Here we offer the vectorial generalization of the scalar approach that we have developed earlier. The approach concludes in the representation of the radiation field as superposition of anisotropic (singular) part and smooth regular part. We evaluate the singular part in vectorial modification of spherical harmonics method (VMSH). The anisotropic part contains all solution's singularities discussed above and the regular part evaluated from the vectorial radiative transfer equation boundary problem (VRTE BP) with the VMSH as a source function together with the anisotropic (singular) part give the exact solution of the VRTE BP. 1D problem is considered as a necessary step on the way to 3D polarized radiative transfer model.
机译:在这里,我们提供了我们早先开发的标量方法的矢量泛化。该方法总结了辐射场的表示,作为各向异性(奇异)部分的叠加和平滑常规部分。我们评估球形谐波法(VMSH)矢量变形例中的奇异部分。各向异性部分包含上面讨论的所有解决方案的奇点,并且从VMSH和各向异性(奇异)部分一起使用VMSH评估的常规部分与VMSH一起评估的源函数给出VRTE BP的精确解。 1D问题被认为是对3D偏振辐射传输模型的方式的必要步骤。

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