论文标题
太阳爆发的脚步处的电流演变
Electric current evolution at the footpoints of solar eruptions
论文作者
论文摘要
电流在触发太阳耀斑及其演变中起着至关重要的作用。本文的目的是测试表面电流是否具有表面或地下固定源,因为预测了耀斑物理的电路方法,还是表面磁场对MHD方法所提出的冠状磁场对冠状磁场演变的响应。在2011年至2016年SDO在磁盘中心附近观察到的所有19个X级耀斑中,我们分析了唯一可以识别出透明的丝带钩的喷发耀斑。带有钩子的耀斑丝带被认为是MHD耀斑模型中爆发通量绳索的足迹。第一次进行了观测值和欧姆3D MHD模拟中钩子内电流时间进化的精细测量。我们的分析表明,在喷发期间和之后,在丝带钩所包围的区域的电流下降。我们将电流的减少解释为由于喷发过程中电晕绳绳的扩展。我们的分析为3D中的标准耀斑模型带来了新的贡献。
Electric currents play a critical role in the triggering of solar flares and their evolution. The aim of the present paper is to test whether the surface electric current has a surface or subsurface fixed source as predicts the circuit approach of flare physics, or is the response of the surface magnetic field to the evolution of the coronal magnetic field as the MHD approach proposes. Out of all 19 X-class flares as observed by SDO from 2011 to 2016 near the disk center, we analyzed the only 9 eruptive flares for which clear ribbon-hooks were identifiable. Flare ribbons with hooks are considered to be the footprints of eruptive flux ropes in MHD flare models. For the first time, fine measurements of time-evolution of electric currents inside the hooks in the observations as well as in the OHM 3D MHD simulation are performed. Our analysis shows a decrease of the electric current in the area surrounded by the ribbon hooks during and after the eruption. We interpret the decrease of the electric currents as due to the expansion of the flux rope in the corona during the eruption. Our analysis brings a new contribution to the standard flare model in 3D.