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The Large-scale Coronal Structure of the 2017 August 21 Great American Eclipse: An Assessment of Solar Surface Flux Transport Model Enabled Predictions and Observations

机译:2017年8月21日大日食的大规模日冕结构:评估太阳表面通量传输模型的预测和观测结果

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On 2017 August 21, a total solar eclipse swept across the contiguous United States, providing excellent opportunities for diagnostics of the Sun's corona. The Sun's coronal structure is notoriously difficult to observe except during solar eclipses; thus, theoretical models must be relied upon for inferring the underlying magnetic structure of the Sun's outer atmosphere. These models are necessary for understanding the role of magnetic fields in the heating of the corona to a million degrees and the generation of severe space weather. Here we present a methodology for predicting the structure of the coronal field based on model forward runs of a solar surface flux transport model, whose predicted surface field is utilized to extrapolate future coronal magnetic field structures. This prescription was applied to the 2017 August 21 solar eclipse. A post-eclipse analysis shows good agreement between model simulated and observed coronal structures and their locations on the limb. We demonstrate that slow changes in the Sun's surface magnetic field distribution driven by long-term flux emergence and its evolution governs large-scale coronal structures with a (plausibly cycle-phase dependent) dynamical memory timescale on the order of a few solar rotations, opening up the possibility for large-scale, global corona predictions at least a month in advance.
机译:2017年8月21日,日全食席卷了整个美国,为诊断日冕带来了极好的机会。众所周知,除了日食期间,太阳的日冕结构很难观察到。因此,必须依靠理论模型来推断太阳外层大气的潜在磁性结构。这些模型对于理解磁场在将电晕加热到一百万度和产生严酷的太空天气中的作用是必要的。在这里,我们提出了一种基于太阳表面通量传输模型的模型正演来预测日冕场结构的方法,该方法的预测面场用于推断未来的日冕磁场结构。该处方适用于2017年8月21日的日食。蚀后分析表明,模拟的模型和观察到的冠状结构及其在肢体上的位置之间具有良好的一致性。我们证明了由长期通量的出现驱动的太阳表面磁场分布的缓慢变化及其演化控制着具有(可能与周期相位有关的)动态记忆时间尺度的大规模日冕结构,其动态周期约为太阳旋转数,开度数至少提前一个月进行大规模全球电晕预测的可能性。

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