论文标题

在太阳耀斑期间观察到的超弧形下流的运动学和热性能的统计研究

Statistical Investigation of the Kinematic and Thermal Properties of Supra-arcade Downflows Observed During a Solar Flare

论文作者

Tan, Guangyu, Hou, Yijun, Tian, Hui

论文摘要

超弧形下流(SADS)是在极端紫外线或X射线观测中观察到的降低探测后耀斑回路的深色结构,并且与太阳能耀斑期间的磁重新连接密切相关。由于缺乏对单个耀斑中的SADS的统计研究,因此在耀斑过程中的运动学和热能性能的演变仍然晦涩难懂。在这项工作中,我们在2013年5月22日发生的爆发中确定了81个SADS,使用太阳能动力学天文台(SDO)上的大气成像组件(AIA)观察。记录了每个SAD的运动学特性,包括外观时间,高度,投射速度和加速度。我们发现,在耀斑期间,SADS的外观高度变大了,这可能是由于等离子板底部的提升。在耀斑衰变阶段,SADS主要出现的地区从北部移到了南侧,可能与南侧的继发爆发有关。大多数SAD的轨迹可以通过一个或两个减速过程拟合,而在下降期间,一些特殊的轨迹具有正加速。对于热性能,我们选择了54个SAD,它们的前后和身体可以在整个下降期间与周围区分开来进行差分发射测量分析。据揭示,在向下过程中,悲伤的前部和身体的温度倾向于升高,密度和温度之间的关系表明加热主要是由绝热压缩引起的。

Supra-arcade downflows (SADs) are dark structures descending towards post-reconnection flare loops observed in extreme ultraviolet or X-ray observations and are closely related to magnetic reconnection during solar flares. Due to the lack of statistical study on SADs in a single flare, evolutions of kinematic and thermal properties of SADs during the flare process still remain obscure. In this work, we identified 81 SADs in a flare that occurred on 2013 May 22 using observations of the Atmospheric Imaging Assembly (AIA) on the Solar Dynamics Observatory (SDO). The kinematic properties of each SAD, including the appearance time, height, projective velocity, and acceleration were recorded. We found that the appearance heights of SADs become larger during the flare, which is likely due to the lift of the bottom of the plasma sheet. In the flare decay phase, the region where SADs mainly appear moves from the north part to the south side possibly related to a secondary eruption in the south side. The trajectories of most SADs can be fitted by one or two deceleration processes, while some special ones have positive accelerations during the descent. For the thermal properties, we selected 54 SADs, whose front and body could be clearly distinguished from the surrounding during the entire descent, to perform Differential Emission Measure analysis. It is revealed that the temperatures of the SAD front and body tend to increase during their downward courses, and the relationship between the density and temperature indicates that the heating is mainly caused by adiabatic compression.

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