论文标题

多热通量绳的太阳喷发失败

Failed Solar Eruption of A Multi-thermal Flux Rope

论文作者

Li, Leping, Song, Hongqiang, Peter, Hardi, Chitta, Lakshmi Pradeep

论文摘要

托有热等离子体的磁通绳(FR)被认为是冠状质量喷射物理学的核心。通过大气成像组件(AIA)的太阳能动力学天文台(SDO)的大气成像组件(AIA)的通带广泛观察到这样的FR,这些传球对从10 mk大约10 mk的热等离子体发射很敏感。相反,对FRS的温暖(约1 MK)对应物的观察很少。在这项研究中,我们报告了多热FR的喷发失败,既有热量和温暖的血浆。 2015年5月1日,AIA高温通带出现在附近火炬南部的东南太阳能肢体中,然后向外喷发。在喷发期间,它垂直于爆发方向旋转。热通道停止爆发,逐渐消失,显示出失败的喷发。在热通道爆发期间,AIA低温通带依次出现了温暖的通道。它经历了类似的演变,包括失败的喷发,旋转和消失,与热通道。在AIA低温图像中,在温暖通道爆发前面形成了明亮的压缩前端。在热通道爆发下,发生了一个小的耀斑,在AIA高温通带中形成的几张电流板连接了爆发的通道和下面的耀斑。研究热通道和温暖通道之间的空间和时间关系,我们建议两个通道一起扭曲,构成具有高温和低温等离子体的相同多热FR。

A magnetic flux rope (FR), hosting hot plasma, is thought to be central to the physics of coronal mass ejection. Such FRs are widely observed with passbands of the Atmospheric Imaging Assembly (AIA) onboard the Solar Dynamics Observatory (SDO), that are sensitive to emission from the hot plasma around 10 MK. In contrast, observations of warmer (around 1 MK) counterparts of FRs are sparse. In this study, we report the failed eruption of a multi-thermal FR, hosting both hot and warm plasma. On 2015 May 1, a hot channel appeared in the AIA high temperature passbands out of the southeastern solar limb to the south of a nearby flare, and then erupted outward. During the eruption, it rotated perpendicular to the erupting direction. The hot channel stopped erupting, and disappeared gradually, showing a failed eruption. During the hot channel eruption, a warm channel appeared sequentially in the AIA low temperature passbands. It underwent the similar evolution, including the failed eruption, rotation, and disappearance, to the hot channel. A bright compression front is formed in front of the warm channel eruption in AIA low temperature images. Under the hot and warm channel eruptions, a small flare occurred, upon which several current sheets, connecting the erupting channels and the underneath flare, formed in the AIA high temperature passbands. Investigating the spatial and temporal relation between the hot and warm channels, we suggest that both channels twist together, constituting the same multi-thermal FR that has plasma with the high and low temperatures.

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