论文标题

爆发的圆形 - 丝本耀斑,具有延长的远程亮光

An Eruptive Circular-ribbon Flare with Extended Remote Brightenings

论文作者

Liu, Chang, Prasad, Avijeet, Lee, Jeongwoo, Wang, Haimin

论文摘要

我们研究了2013年11月10日的爆发X1.1圆形 - 丝本耀斑,将多波长观测值与使用非无孔场方法相结合。在第一阶段,通过两个轻度扭曲的剪切拱廊之间的磁性重新连接形成灯丝,它们嵌入了与空点相关的风扇圆顶之下。这种重新连接似乎是由光时剪切和围绕内部两个街机脚关节融合的流动驱动的,这与横向场的耀斑相关变化一致。由于圆环的不稳定性,灯丝的南部向上升高,并推向零点。然后,诱导的空点重新连接会在西部生成圆形色带,并在西部产生初始远程亮度,因为加速的电子沿风扇沉淀,并沿着Quasi-separatix表面向外传播,在信封场中具有较高的压缩因子(Q)的Quasi-Separatix表面,在这里,它们在这里具有类似窗帘的形状。在第二阶段,通量绳的南端从表面脱离,依次破坏圆顶和上覆的田地,并以鞭打的方式爆发,成为部分光环冠状质量弹出。这导致了磁幕的脚部的增强的耀斑发射和快速移动的远程亮丽,该窗帘横跨一个非常宽的区域,也与冠状凹痕有关。这是喷发圆形丝纹耀斑的罕见例子,其中通量绳从圆顶从形成到成功的喷发的演变,并完全观察到由此产生的异常扩展的远程亮光。

We study an eruptive X1.1 circular-ribbon flare on 2013 November 10, combining multiwavelength observations with a coronal field reconstruction using a non-force-free field method. In the first stage, a filament forms via magnetic reconnection between two mildly twisted sheared arcades, which are embedded under the fan dome associated with a null point. This reconnection seems to be driven by photospheric shearing and converging flows around the inner two arcade footpoints, consistent with the flare-related changes of transverse field. The southern portion of the filament rises upward due to torus instability and pushes against the null point. The induced null point reconnection then generates the circular ribbon and the initial remote brightening in the west, as accelerated electrons precipitate along the fan and propagate outward along quasi-separatix surfaces with high values of the squashing factor (Q) in the envelope fields, which have a curtain-like shape here. In the second stage, the southern end of the flux rope breaks away from the surface, sequentially disrupts the dome and overlying fields, and erupts in a whipping-like fashion to become a partial halo coronal mass ejection. This leads to an enhanced flare emission and fast-moving remote brightenings at the footpoints of the magnetic curtain, which span a remarkably broad region and are also associated with coronal dimmings. This is a rare example of eruptive circular-ribbon flares, in which the evolution of a flux rope from its formation to successful eruption out of the dome and the resulting unusually extended remote brightenings are completely observed.

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