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Buildup of a highly twisted magnetic flux rope during a solar eruption

机译:日光爆发期间高扭曲磁通量绳的堆积

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摘要

The magnetic flux rope is among the most fundamental magnetic configurations in plasma. Although its presence after solar eruptions has been verified by spacecraft measurements near Earth, its formation on the Sun remains elusive, yet is critical to understanding a broad spectrum of phenomena. Here we study the dynamic formation of a magnetic flux rope during a classic two-ribbon flare. Its feet are identified unambiguously with conjugate coronal dimmings completely enclosed by irregular bright rings, which originate and expand outward from the far ends of flare ribbons. The expansion is associated with the rapid ribbon separation during the flare main phase. Counting magnetic flux through the feet and the ribbon-swept area reveals that the rope’s core is more twisted than its average of four turns. It propagates to the Earth as a typical magnetic cloud possessing a similar twist profile obtained by the Grad-Shafranov reconstruction of its three dimensional structure.
机译:磁通量绳索是等离子体中最基本的磁性结构之一。尽管太阳爆发后它的存在已经通过地球附近的航天器测量得到了证实,但是它在太阳上的形成仍然难以捉摸,但是对于理解广泛的现象至关重要。在这里,我们研究了经典的两丝带耀斑期间磁通量绳索的动态形成。它的脚被共轭冠状调光明确地标识,共轭冠状调光完全被不规则的明亮环包围,不规则的明亮环从耀斑的远端开始并向外扩展。膨胀与火炬主相期间的快速色带分离有关。计算通过脚部和碳带扫过区域的磁通量,可以发现绳索的核心比其平均四圈的扭曲程度更大。它以典型的磁云形式传播到地球,该磁云具有通过Grad-Shafranov三维结构重建获得的相似的扭曲轮廓。

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