论文标题

用多个独立可观察物来限制全球冠状模型

Constraining Global Coronal Models with Multiple Independent Observables

论文作者

Badman, Samuel T., Brooks, David H., Poirier, Nicolas, Warren, Harry P., Petrie, Gordon, Rouillard, Alexis P., Arge, C. Nick, Bale, Stuart D., Aguero, Diego de Pablos, Harra, Louise, Jones, Shaela I., Kouloumvakos, Athanasios, Riley, Pete, Panasenco, Olga, Velli, Marco, Wallace, Samantha

论文摘要

全球冠状模型寻求对太阳大气的准确物理表示,例如可以使用,例如推动太空天气模型。评估其准确性是一项复杂的任务,并且有多种观察途径可以提供约束和调谐模型参数。在这里,我们结合了几个这样的独立约束,定义了一个模型不足的框架,以进行标准化比较。我们需要模型来预测光球处的冠状孔的分布,以及模型外边界处的中性线拓扑。我们将这些预测与冠状孔位置的极端紫外线(EUV)观察结果,由Parker Solar Probe和1AU SpaceCraft测得的\ textit {intu {Intu {Intu}测量的磁性扇形结构。我们研究了这些指标,用于潜在的场源表面(PFSS)模型,它是源表面高度和磁图选择的函数,并与更物理的Wang-Sheeley-Arge(WSA)和球形(MAS)模型外的磁流失动力学算法进行比较。我们发现,目前不可能将PFSS模型同时优化所有三个指标,这意味着在冠状孔的代表质量和流媒体带拓扑之间进行了权衡。 WSA和MAS的结果表明,它们包括其他物理学,通过在保持冠状孔尺寸的同时使彩带孔变平,其中MAS还改善了相对于WSA的冠状孔表示。我们得出的结论是,该框架对于模型间和模型比较非常有用。框架不可或缺的是每个模型所需的可观察到的标准化,评估了不同的模型方面。

Global coronal models seek to produce an accurate physical representation of the Sun's atmosphere which can be used, for example, to drive space weather models. Assessing their accuracy is a complex task and there are multiple observational pathways to provide constraints and tune model parameters. Here, we combine several such independent constraints, defining a model-agnostic framework for standardized comparison. We require models to predict the distribution of coronal holes at the photosphere, and neutral line topology at the model outer boundary. We compare these predictions to extreme ultraviolet (EUV) observations of coronal hole locations, white-light Carrington maps of the streamer belt and the magnetic sector structure measured \textit{in situ} by Parker Solar Probe and 1AU spacecraft. We study these metrics for Potential Field Source Surface (PFSS) models as a function of source surface height and magnetogram choice, as well as comparing to the more physical Wang-Sheeley-Arge (WSA) and the Magnetohydrodynamics Algorithm outside a Sphere (MAS) models. We find that simultaneous optimization of PFSS models to all three metrics is not currently possible, implying a trade-off between the quality of representation of coronal holes and streamer belt topology. WSA and MAS results show the additional physics they include addresses this by flattening the streamer belt while maintaining coronal hole sizes, with MAS also improving coronal hole representation relative to WSA. We conclude that this framework is highly useful for inter- and intra-model comparisons. Integral to the framework is the standardization of observables required of each model, evaluating different model aspects.

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