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DIRECT EVIDENCE FOR A FAST CORONAL MASS EJECTION DRIVEN BY THE PRIOR FORMATION AND SUBSEQUENT DESTABILIZATION OF A MAGNETIC FLUX ROPE

机译:由磁通绳的先形成和随后的失稳驱动的快速冠状动脉抛射的直接证据

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Magnetic flux ropes play a central role in the physics of coronal mass ejections (CMEs). Although a flux-rope topology is inferred for the majority of coronagraphic observations of CMEs, a heated debate rages on whether the flux ropes pre-exist or whether they are formed on-the-fly during the eruption. Here, we present a detailed analysis of extreme-ultraviolet observations of the formation of a flux rope during a confined flare followed about 7 hr later by the ejection of the flux rope and an eruptive flare. The two flares occurred during 2012 July 18 and 19. The second event unleashed a fast (1000 km s–1) CME. We present the first direct evidence of a fast CME driven by the prior formation and destabilization of a coronal magnetic flux rope formed during the confined flare on July 18.
机译:磁通量绳索在日冕物质抛射(CME)的物理学中起着核心作用。尽管对于大多数CME的冠层观测可以推断出磁通绳的拓扑结构,但对于磁通绳是否存在或在喷发过程中是否在飞行中形成激烈的争论仍在不断。在这里,我们对极限火炬期间助焊剂绳索形成的极端紫外观测进行了详细分析,大约7小时后,助焊剂绳索被喷出并爆发出火炬。这两次爆发发生在2012年7月18日和19日。第二起事件释放了快速(> 1000 km s-1)CME。我们提供了由7月18日在受限火炬形成期间形成的冠状磁通量缆绳的先期形成和不稳定驱动的快速CME的直接证据。

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