论文标题

太阳能区域灯丝从准静态状态到喷发的动力学演变:滚动运动,不弯曲运动,材料转移和手性

Dynamics evolution of a solar active-region filament from quasi-static state to eruption: rolling motion, untwisting motion, material transfer, and chirality

论文作者

Yan, X. L., Li, Q. L., Chen, G. R., Xue, Z. K., Feng, L., Wang, J. C., Yang, L. H., Zhang, Y.

论文摘要

为了更好地了解太阳丝的磁性结构和喷发过程,通过使用高分辨率的H $α$数据来研究与B级耀斑相关的太阳能活性区(标签F2)喷发,并与Sodo(Sdo)的EUV euv观测(Sodo)结合了1 m新真空太阳能望远镜(NVST)的高分辨率H $α$数据。灯丝F2被另一条丝(标有F1)喷发打扰,后者经历了类似鞭子的运动。在细丝F2爆发之前,多普勒格拉姆(Dopplergram)表明,灯丝F2体的南部和北部同时沿着细丝脊柱表现出Blueshift和Redshift。这意味着灯丝F2从一侧滚动到另一侧。在细丝F2喷发期间,丝体的多普勒速度移位与喷发前相反。它表明,灯丝体表现出不扭曲的运动,也可以通过追踪喷发丝线的运动来识别。此外,发现细丝F2的材料被转移到周围的磁场回路上,这是由灯丝F2和周围磁路之间的磁重连接引起的。根据灯丝F2喷发前的右丝线,可以推断出丝F2最初由剪切的拱廊支撑。以下观察结果表明,在喷发阶段形成的细丝F2的扭曲磁性结构。

To better understand magnetic structure and eruptive process of solar filaments, a solar active-region filament (labeled F2) eruption associated with a B-class flare was investigated by using high-resolution H$α$ data from the 1 m New Vacuum Solar Telescope (NVST), combined with EUV observations of the Solar Dynamical Observatory (SDO). The filament F2 was disturbed by another filament (labeled F1) eruption that experienced a whip-like motion. Before the filament F2 eruption, the Dopplergrams show that the southern and the northern parts of the filament F2 body exhibit blueshift and redshift along the filament spine, simultaneously. It implies that the filament F2 was rolling from one side to the other. During the filament F2 eruption, the Doppler velocity shifts of the filament body are opposite to that before its eruption. It demonstrates that the filament body exhibits an untwisting motion, which can be also identified by tracing the movement of the eruptive filament threads. Moreover, it is found that the material of the filament F2 was transferred to the surrounding magnetic field loops, which is caused by magnetic reconnection between the filament F2 and the surrounding magnetic loops. According to the right-bearing threads of the filament F2 before its eruption, it can be deduced that the filament F2 is initially supported by a sheared arcade. The following observations reveal that the twisted magnetic structure of the filament F2 formed in the eruption phase.

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