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Evolution of the Photospheric Magnetic Field and Coronal Null Points before Solar Flares

机译:太阳耀斑前光球磁场和冠状零点的演变

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摘要

Based on a topological model for the magnetic field of a solar active region (AR), we suggest a criterion for the existence of magnetic null points on the separators in the corona. With the problem of predicting solar flares in mind, we have revealed a model parameter whose decrease means that the AR evolves toward a major eruptive flare.We analyze the magnetic field evolution for AR 9077 within two days before the Bastille Day flare on July 14, 2000. The coronal conditions are shown to have become more favorable for magnetic reconnection, which led to a 3B/X5.7 eruptive flare.
机译:基于太阳活动区(AR)磁场的拓扑模型,我们提出了一个标准,用于在日冕中的隔板上存在磁性零点。考虑到太阳耀斑的预测问题,我们揭示了一个模型参数,该参数的减小意味着AR向着主要爆发性耀斑发展。我们在7月14日巴士底日耀斑发生前两天内分析了AR 9077的磁场演变。 2000年。表明日冕条件对磁重联变得更加有利,这导致了3B / X5.7爆发性耀斑。

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