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Multi-Dimensional Polarized Radiative Transfer: Methods and Solar Applications

机译:多维偏振辐射转移:方法和太阳能应用

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Observations of the Sun using modern telescopes as well as numerical simulations of the Sun reveal existence of enormous inhomogeneous structures in the solar atmosphere. The polarized spectrum of the Sun (Second Solar Spectrum), produced due to anisotropic scattering helps to infer the temperature structure, magnetic fields, and other physical properties of the-solar atmosphere more accurately. Analysis of the Second Solar Spectrum requires solution of the polarized radiative transfer equation. To take spatial inhomogeneities into account, a solution of the transfer equation in multi-dimensional geometries is necessary. In this paper we present a specialized review of recent developments in the methods to solve multi-dimensional polarized radiative transfer equation and an application of these methods to analyze the observations.
机译:使用现代望远镜的阳光观察以及太阳的数值模拟揭示了太阳气氛中巨大的不均匀结构的存在。由于各向异性散射而产生的太阳(第二太阳光谱)的偏振光谱有助于推断太阳能气氛的温度结构,磁场和更准确的物理性质。第二太阳光谱的分析需要偏振辐射转移方程的解决方案。为了考虑空间不均匀性,需要在多维几何形状中的传递方程的解决方案是必要的。在本文中,我们对求解多维极化辐射传输方程的方法以及这些方法的应用来展示最新的发展综述,以分析观察。

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