论文标题

与交换和数据驱动的非电力冠状磁场模型对Middle Corona的研究

Investigation of the Middle Corona with SWAP and a Data-Driven Non-Potential Coronal Magnetic Field Model

论文作者

Meyer, Karen A., Mackay, Duncan H., Talpeanu, Dana-Camelia, Upton, Lisa A., West, Matthew J.

论文摘要

使用主动像素系统检测器和图像处理(SWAP)仪器在船上的船上自治2(proba2)航天器上使用主动像素系统探测器和图像处理(SWAP)仪器的大型视野视野为研究与全球冠状磁场模拟在EUV中观察到的扩展的冠状结构提供了独特的机会。全局非电位磁场模型用于模拟2014年9月1日至2015年3月31日的全球电晕演变,这是由新出现的双极活动区域驱动的,该磁震(HMI)磁力图确定。我们将模拟磁场的大尺度结构与交换EUV观测中的LIMB外看到的结构进行了比较。特别是,我们研究了该模型在再现封闭结构和开放结构的区域方面的成功。结构规模;并比较在几个旋转中观察到的冠状风扇的演变。发现该模型可以准确地重现观察到的大规模非LIMB结构。当确实出现差异时,由于在太阳的另一侧出现了活跃的区域,它们主要发生在东太阳肢上,直到在面向地球的一侧观察到它们之前,这些区域才无法纳入模型。当将这种``晚期''主动区域出现纳入模型时,我们发现模拟的电晕自校正在几天之内,因此在西肢上的模拟结构更加接近观察到的结构。如果模型不太成功,我们会考虑如何通过模型开发或其他观察产品来解决这一问题。

The large field-of-view of the Sun Watcher using Active Pixel System detector and Image Processing (SWAP) instrument on board the PRoject for Onboard Autonomy 2 (PROBA2) spacecraft provides a unique opportunity to study extended coronal structures observed in EUV in conjunction with global coronal magnetic field simulations. A global non-potential magnetic field model is used to simulate the evolution of the global corona from 1 September 2014 to 31 March 2015, driven by newly emerging bipolar active regions determined from Helioseismic and Magnetic Imager (HMI) magnetograms. We compare the large-scale structure of the simulated magnetic field with structures seen off-limb in SWAP EUV observations. In particular, we investigate how successful the model is in reproducing regions of closed and open structures; the scale of structures; and compare the evolution of a coronal fan observed over several rotations. The model is found to accurately reproduce observed large-scale off-limb structures. When discrepancies do arise they mainly occur off the east solar limb due to active regions emerging on the far side of the Sun, which cannot be incorporated into the model until they are observed on the Earth-facing side. When such ``late'' active region emergences are incorporated into the model, we find that the simulated corona self-corrects within a few days, so that simulated structures off the west limb more closely match what is observed. Where the model is less successful, we consider how this may be addressed, through model developments or additional observational products.

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