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Homologous Flares and Magnetic Field Topology in Active Region NOAA 10501 on 20 November 2003

机译:2003年11月20日活动区NOAA 10501中的同源耀斑和磁场拓扑

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摘要

We present and interpret observations of two morphologically homologous flares that occurred in active region (AR) NOAA 10501 on 20 November 2003. Both flares displayed four homologous Hα ribbons and were both accompanied by coronal mass ejections (CMEs). The central flare ribbons were located at the site of an emerging bipole in the centre of the active region. The negative polarity of this bipole fragmented in two main pieces, one rotating around the positive polarity by ≈ 110° within 32 hours. We model the coronal magnetic field and compute its topology, using as boundary condition the magnetogram closest in time to each flare. In particular, we calculate the location of quasi-separatrix layers (QSLs) in order to understand the connectivity between the flare ribbons. Though several polarities were present in AR 10501, the global magnetic field topology corresponds to a quadrupolar magnetic field distribution without magnetic null points. For both flares, the photospheric traces of QSLs are similar and match well the locations of the four Hα ribbons. This globally unchanged topology and the continuous shearing by the rotating bipole are two key factors responsible for the flare homology. However, our analyses also indicate that different magnetic connectivity domains of the quadrupolar configuration become unstable during each flare, so that magnetic reconnection proceeds differently in both events.
机译:我们提出并解释了2003年11月20日在活动区域​​(AR)NOAA 10501中发生的两个形态上相同的耀斑的观察结果。两个耀斑均显示出四个同源Hα色带,并伴有冠状物质抛射(CME)。中央火炬带位于活动区域中心的新兴双极点。该双极的负极分为两个主要部分,其中一个在32小时内绕正极旋转≈110°。我们使用时间上最接近每个耀斑的磁图作为边界条件,对日冕磁场建模并计算其拓扑。尤其是,我们计算准分离层(QSL)的位置,以了解耀斑带之间的连通性。尽管AR 10501中存在几种极性,但全局磁场拓扑对应于没有磁零点的四极磁场分布。对于这两个耀斑,QSL的光球轨迹相似,并且与四个Hα色带的位置匹配得很好。这种全局不变的拓扑结构和旋转双极的连续剪切是造成耀斑同源性的两个关键因素。但是,我们的分析还表明,在每次爆发过程中,四极配置的不同磁连通域变得不稳定,因此,在两种情况下,磁重连接的处理方式都不同。

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