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Automated Detection Of Eit Waves And Dimmings

机译:自动检测发射波和调光

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Studies of the onset of Earth-directed coronal mass ejections (CMEs) rely on solar disk observations where CME structures are difficult to disentangle because of the diversity and transient character of the phenomena involved. Dimmings and coronal waves are among the best evidence of the large-scale reorganization of coronal magnetic fields associated with the onset of CMEs. The physical mechanism behind EIT waves is still unclear: they are considered as MHD waves and/or as a consequence of plasma compression on the extending border of a dimming. In this paper, we address the problem of automatically detecting and analyzing EIT waves and dimmings in EUV images. This paper presents a “proof of principle” that automated detection of EIT wave and dimmings is indeed possible. At the current stage of work, the method can unambiguously detect dimmings and EIT waves when applied on a typical test-case event. Moreover, we propose a way to extract these events from the data, and determine such parameters as life time, depth, area and volume of dimmings for future catalogs. For EIT waves we unambiguously define, in near solar minimum conditions, the eruption center, the front of EIT wave and its propagation velocity. In addition, we show that the presented methods yield new insights about the geometrical shape of dimmings and the connection with the EIT wave front properties, and the apparent angular rotation of the EIT wave under study.
机译:关于地球定向日冕物质抛射(CME)发生的研究依赖于太阳圆盘观测,由于涉及现象的多样性和短暂性,CME结构难以解开。昏暗和日冕波是与CME发作相关的日冕磁场大规模重组的最好证据。 EIT波背后的物理机制仍不清楚:它们被视为MHD波和/或由于调光扩展边界上的等离子体压缩而产生。在本文中,我们解决了自动检测和分析EUV图像中的EIT波和调光的问题。本文提出了一种“原理证明”,即自动检测EIT波和调光确实是可能的。在当前的工作阶段,该方法在应用于典型的测试用例事件时可以明确地检测到调光和EIT波。此外,我们提出了一种从数据中提取这些事件的方法,并确定诸如寿命,深度,调光面积和体积等参数以供将来的目录使用。对于EIT波,我们在接近太阳的最低条件下明确定义了喷发中心,EIT波的前缘及其传播速度。此外,我们表明,所提出的方法对调光的几何形状以及与EIT波前特性的关系以及所研究的EIT波的视在角旋转产生了新的见解。

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