Radiative Magnetohydrodynamic Simulation of the Confined Eruption of a Magnetic Flux Rope: Magnetic Structure and Plasma Thermodynamics

Canbo Wang, Feng Chen, M. Ding, Zekun Lu
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引用次数: 2

Abstract

It is widely believed that magnetic flux ropes are the key structure of solar eruptions; however, their observable counterparts are not clear yet. We study a flare associated with flux rope eruption in a comprehensive radiative magnetohydrodynamic simulation of flare-productive active regions, especially focusing on the thermodynamic properties of the plasma involved in the eruption and their relation to the magnetic flux rope. The preexisting flux rope, which carries cold and dense plasma, rises quasi-statically before the onset of eruptions. During this stage, the flux rope does not show obvious signatures in extreme ultraviolet (EUV) emission. After the flare onset, a thin “current shell” is generated around the erupting flux rope. Moreover, a current sheet is formed under the flux rope, where two groups of magnetic arcades reconnect and create a group of postflare loops. The plasma within the “current shell,” current sheet, and postflare loops are heated to more than 10 MK. The postflare loops give rise to abundant soft X-ray emission. Meanwhile, a majority of the plasma hosted in the flux rope is heated to around 1 MK, and the main body of the flux rope is manifested as a bright arch in cooler EUV passbands such as the AIA 171 Å channel.
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磁通绳受限喷发的辐射磁流体动力学模拟:磁结构和等离子体热力学
人们普遍认为,磁通量绳是太阳喷发的关键结构;然而,它们的可观测对应物尚不清楚。在耀斑产生活跃区的综合辐射磁流体动力学模拟中,我们研究了与磁通绳喷发有关的耀斑,特别关注了与爆发有关的等离子体的热力学性质及其与磁通绳的关系。先前存在的通量绳携带着冷而致密的等离子体,在爆发开始前呈准静态上升。在此阶段,磁通绳在极紫外(EUV)辐射中没有明显的特征。耀斑爆发后,一层薄薄的“电流壳”在喷发的通量绳周围产生。此外,在磁通绳下形成了一个电流片,在那里两组磁拱廊重新连接并创建了一组耀斑后环路。“电流壳”、电流片和耀斑后环内的等离子体被加热到10 MK以上。耀斑后环产生了大量的软x射线发射。同时,通量绳中的大部分等离子体被加热到1mk左右,通量绳的主体在较冷的EUV通道(如AIA 171 Å通道)中表现为明亮的拱形。
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