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Quasi-oscillatory dynamics observed in ascending phase of the flare on March 6, 2012

机译:在2012年3月6日在Flare的上升阶段观察到的准振荡动力学

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Context. The dynamics of the flaring loops in active region (AR) 11429 are studied. The observed dynamics consist of several evolution stages of the flaring loop system during both the ascending and descending phases of the registered M-class flare. The dynamical properties can also be classified by different types of magnetic reconnection, related plasma ejection and aperiodic flows, quasi-periodic oscillatory motions, and rapid temperature and density changes, among others. The focus of the present paper is on a specific time interval during the ascending (pre-flare) phase. Aims. The goal is to understand the quasi-periodic behavior in both space and time of the magnetic loop structures during the considered time interval. Methods. We have studied the characteristic location, motion, and periodicity properties of the flaring loops by examining space-time diagrams and intensity variation analysis along the coronal magnetic loops using AIA intensity and HMI magnetogram images (from the Solar Dynamics Observatory). Results. We detected bright plasma blobs along the coronal loop during the ascending phase of the solar flare, the intensity variations of which clearly show quasi-periodic behavior. We also determined the periods of these oscillations. Conclusions. Two different interpretations are presented for the observed dynamics. Firstly, the oscillations are interpreted as the manifestation of non-fundamental harmonics of longitudinal standing acoustic oscillations driven by the thermodynamically non-equilibrium background (with time variable density and temperature). The second possible interpretation we provide is that the observed bright blobs could be a signature of a strongly twisted coronal loop that is kink unstable.
机译:语境。研究了活性区域(AR)11429中的喇叭形环的动态。观察到的动态包括在注册的M级耀斑的上升和降序期间燃烧回路系统的几个演化阶段。动态特性也可以通过不同类型的磁性重新连接,相关等离子体喷射和非周期性流动,准周期性振荡运动和快速温度和密度变化来分类。本文的焦点是上升(前耀斑)阶段的特定时间间隔。目标。目标是在考虑的时间间隔期间了解磁回路结构的两个空间和时间中的准周期性行为。方法。通过使用AIA强度和HMI磁图(来自太阳能动态天文台)检查沿着冠状磁环的空间时间图和强度变化分析,研究了燃烧环的特征位置,运动和周期性特性。结果。在太阳耀斑的上升阶段,我们在冠状环中检测到冠状环的明亮等离子体斑,其强度变化清楚地显示了准周期性行为。我们还确定了这些振荡的时期。结论。为观察到的动态提出了两个不同的解释。首先,振荡被解释为由热力学非平衡背景(随着时间可变密度和温度)驱动的纵向站立声学振荡的非基本次谐波的表现。我们提供的第二种可能的解释是观察到的明亮斑点可能是一个强烈扭曲的冠圈的签名,这是扭结不稳定的。

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