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Magnetic field and radiative transfer modelling of a quiescent prominence

机译:静态突出的磁场和辐射传递模型

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Aims. The aim of this work is to analyse the multi-instrument observations of the June 22, 2010 prominence to study its structure in detail, including the prominence-corona transition region and the dark bubble located below the prominence body. Methods. We combined results of the 3D magnetic field modelling with 2D prominence fine structure radiative transfer models to fully exploit the available observations. Results. The 3D linear force-free field model with the unsheared bipole reproduces the morphology of the analysed prominence reasonably well, thus providing useful information about its magnetic field configuration and the location of the magnetic dips. The 2D models of the prominence fine structures provide a good representation of the local plasma configuration in the region dominated by the quasi-vertical threads. However, the low observed Lyman-α central intensities and the morphology of the analysed prominence suggest that its upper central part is not directly illuminated from the solar surface. Conclusions. This multi-disciplinary prominence study allows us to argue that a large part of the prominence-corona transition region plasma can be located inside the magnetic dips in small-scale features that surround the cool prominence material located in the dip centre. We also argue that the dark prominence bubbles can be formed because of perturbations of the prominence magnetic field by parasitic bipoles, causing them to be devoid of the magnetic dips. Magnetic dips, however, form thin layers that surround these bubbles, which might explain the occurrence of the cool prominence material in the lines of sight intersecting the prominence bubbles.
机译:目的这项工作的目的是分析2010年6月22日隆起的多仪器观测,以详细研究其结构,包括隆起-电晕过渡区和位于隆起体下方的黑气泡。方法。我们将3D磁场建模的结果与2D突出的精细结构辐射传输模型结合起来,以充分利用可用的观测结果。结果。具有无剪切双极的3D线性无力场模型可以很好地重现所分析凸起的形态,从而提供有关其磁场配置和磁倾角位置的有用信息。突出的精细结构的2D模型很好地表示了准准螺纹占主导地位的区域中的局部等离子体构型。但是,观测到的Lyman-α中心强度低和所分析突出的形态表明,其上部中心部分未直接从太阳表面照射。结论。这项多学科的突出研究使我们认为,突出-电晕过渡区等离子体的大部分可以位于磁倾角内的小尺度特征内,这些特征围绕着位于倾角中心的较冷突出物质。我们还认为,由于寄生双极子对突出磁场的干扰,会形成深色的突出气泡,从而使它们没有磁倾角。然而,磁倾角形成围绕这些气泡的薄层,这可能解释了在与凸泡相交的视线中冷凸出材料的出现。

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