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Physics of Solar Prominences: I—Spectral Diagnostics and Non-LTE Modelling

机译:太阳突出物理:I-光谱诊断和非LTE建模

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This review paper outlines background information and covers recent advances made via the analysis of spectra and images of prominence plasma and the increased sophistication of non-LTE (i.e. when there is a departure from Local Thermodynamic Equilibrium) radiative transfer models. We first describe the spectral inversion techniques that have been used to infer the plasma parameters important for the general properties of the prominence plasma in both its cool core and the hotter prominence-corona transition region. We also review studies devoted to the observation of bulk motions of the prominence plasma and to the determination of prominence mass. However, a simple inversion of spectroscopic data usually fails when the lines become optically thick at certain wavelengths. Therefore, complex non-LTE models become necessary.We thus present the basics of non-LTE radiative transfer theory and the associated multi-level radiative transfer problems. The main results of oneand two-dimensional models of the prominences and their fine-structures are presented. We then discuss the energy balance in various prominence models. Finally, we outline the outstanding observational and theoretical questions, and the directions for future progress in our understanding of solar prominences.
机译:这篇综述文章概述了背景信息,并涵盖了通过对突出等离子体的光谱和图像进行分析以及非LTE的复杂性提高(即当偏离局部热力学平衡时)辐射传递模型而取得的最新进展。我们首先描述光谱反演技术,该技术已被用来推断对突出等离子体在其冷核和较热突出电晕过渡区域中的常规属性重要的等离子体参数。我们还回顾了致力于观察血浆等离子运动和确定突起质量的研究。但是,当线在某些波长下变得光学较粗时,光谱数据的简单反转通常会失败。因此,复杂的非LTE模型变得必要。因此,我们介绍了非LTE辐射传递理论的基础以及相关的多级辐射传递问题。提出了突出的一维和二维模型及其精细结构的主要结果。然后,我们讨论各种突出模型中的能量平衡。最后,我们概述了突出的观测和理论问题,以及对我们对太阳的认识的未来发展方向。

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