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首页> 外文期刊>The Astrophysical journal >SLIPPING MAGNETIC RECONNECTION, CHROMOSPHERIC EVAPORATION, IMPLOSION, AND PRECURSORS IN THE 2014 SEPTEMBER 10 X1.6-CLASS SOLAR FLARE
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SLIPPING MAGNETIC RECONNECTION, CHROMOSPHERIC EVAPORATION, IMPLOSION, AND PRECURSORS IN THE 2014 SEPTEMBER 10 X1.6-CLASS SOLAR FLARE

机译:2014年9月10日X1.6级太阳耀斑的滑动磁连接,色球蒸发,内爆和前兆

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摘要

We investigate the occurrence of slipping magnetic reconnection, chromospheric evaporation, and coronal loop dynamics in the 2014 September 10 X-class flare. Slipping reconnection is found to be present throughout the flare from its early phase. Flare loops are seen to slip in opposite directions toward both ends of the ribbons. Velocities of 20–40 km s?1 are found within time windows where the slipping is well resolved. The warm coronal loops exhibit expanding and contracting motions that are interpreted as displacements due to the growing flux rope that subsequently erupts. This flux rope existed and erupted before the onset of apparent coronal implosion. This indicates that the energy release proceeds by slipping reconnection and not via coronal implosion. The slipping reconnection leads to changes in the geometry of the observed structures at the Interface Region Imaging Spectrograph slit position, from flare loop top to the footpoints in the ribbons. This results in variations of the observed velocities of chromospheric evaporation in the early flare phase. Finally, it is found that the precursor signatures, including localized EUV brightenings as well as nonthermal X-ray emission, are signatures of the flare itself, progressing from the early phase toward the impulsive phase, with the tether-cutting being provided by the slipping reconnection. The dynamics of both the flare and outlying coronal loops is found to be consistent with the predictions of the standard solar flare model in three dimensions.
机译:我们调查了2014年9月10日X级耀斑发生滑移磁重联,色球蒸发和日冕环动力学的情况。从早期开始,整个火炬都出现了滑移重新连接。看到喇叭口环朝着碳带的两端以相反的方向滑动。在滑移得到很好解决的时间窗内发现了20–40 km s?1的速度。温暖的日冕环表现出扩张和收缩运动,这被解释为由于随后喷发的不断增长的通量绳引起的位移。这种通量绳在明显的冠状内爆开始之前就已经存在并爆发了。这表明能量释放是通过滑动重新连接而不是通过冠状内爆来进行的。滑动的重新连接导致在界面区域成像光谱仪狭缝位置处观察到的结构的几何形状发生变化,从耀斑环顶部到色带中的脚点。这导致在耀斑早期观测到的色球蒸发速率发生变化。最后,发现前兆特征包括局部EUV增亮以及非热X射线发射,是火炬本身的特征,从早期阶段发展到脉冲阶段,通过滑移切断系绳重新连接。发现耀斑和冕冠外缘的动力学都与标准太阳耀斑模型在三个维度上的预测一致。

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