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Rapid Formation and Disappearance of a Filament Barb

机译:细丝倒钩的快速形成和消失

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We present observations of an activated quiescent filament obtained in Hα from the high-resolution Dutch Open Telescope (DOT) on 20 August 2010. The filament developed a barb in 10 min, which disappeared within the next 35 min. A data set from the DOT spanning 2 h was used to analyse this event. Line-of-sight velocity maps were constructed from the Doppler images, which reveal flows in filament spine during this period. Photospheric magnetograms were used from the Helioseismic and Magnetic Imager (HMI) on board the Solar Dynamics Observatory (SDO) to determine the changes in magnetic flux in the region surrounding the barb location. The analysis shows flows in the filament spine towards the barb location preceding its formation, and flows in the barb towards the spine during its disappearance. Magnetograms reveal patches of minority polarity flux close to the end of the barb at its greatest elongation. The flows in the spine and barbs are along numerous threads that compose these typical filament structures. The flows are consistent with field-aligned threads and demonstrate that the replacement time of the mass in barbs, and by inference, in the spine is very rapid.
机译:我们目前观察到2010年8月20日从高分辨率的荷兰开放式望远镜(DOT)在Hα中获得的活化的静态灯丝。灯丝在10分钟内形成倒钩,在接下来的35分钟内消失。 DOT跨越2小时的数据集用于分析此事件。视线速度图是根据多普勒图像构建的,该图揭示了在此期间细丝脊柱中的血流。使用太阳动力学天文台(SDO)上的Helioseismic and Magnetic Imager(HMI)的光球磁图来确定倒钩位置周围区域的磁通量变化。分析显示,细丝脊柱中的纤维流向倒钩位置,并在其消失期间流向倒钩。磁图显示,在倒刺的最大伸长率附近,少数极性通量的补丁接近倒钩的末端。脊柱和倒钩中的气流沿构成这些典型细丝结构的许多线流动。流量与现场对准的螺纹一致,并证明倒刺和推论中的脊柱重物的更换时间非常快。

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