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Diagnosing the Magnetic Field Structure of a Coronal Cavity Observed during the 2017 Total Solar Eclipse

机译:诊断2017年日全食期间观测到的冠状腔的磁场结构

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We present an investigation of a coronal cavity observed above the western limb in the coronal red line Fe x 6374 ? using a telescope of Peking University and in the green line Fe xiv 5303 ? using a telescope of Yunnan Observatories, Chinese Academy of Sciences, during the total solar eclipse on 2017 August 21. A series of magnetic field models is constructed based on the magnetograms taken by the Helioseismic and Magnetic Imager on board the Solar Dynamics Observatory (SDO) one week before the eclipse. The model field lines are then compared with coronal structures seen in images taken by the Atmospheric Imaging Assembly on board SDO and in our coronal red line images. The best-fit model consists of a flux rope with a twist angle of 3.1π, which is consistent with the most probable value of the total twist angle of interplanetary flux ropes observed at 1 au. Linear polarization of the Fe xiii 10747 ? line calculated from this model shows a "lagomorphic" signature that is also observed by the Coronal Multichannel Polarimeter of the High Altitude Observatory. We also find a ring-shaped structure in the line-of-sight velocity of Fe xiii 10747 ?, which implies hot plasma flows along a helical magnetic field structure, in the cavity. These results suggest that the magnetic structure of the cavity is a highly twisted flux rope, which may erupt eventually. The temperature structure of the cavity has also been investigated using the intensity ratio of Fe xiii 10747 ? and Fe x 6374 ?.
机译:我们目前对冠状红线Fe x 6374的西肢上方观察到的冠状腔进行了研究。使用北京大学的望远镜和绿线Fe xiv 5303?在2017年8月21日的日全食期间,使用中国科学院云南天文台的望远镜,根据太阳动力学天文台(SDO)上日震和磁成像仪拍摄的磁图,建立了一系列磁场模型。日食前一周。然后将模型场线与在SDO板上的大气成像组件拍摄的图像以及我们的日冕红线图像中看到的日冕结构进行比较。最佳拟合模型由扭角为3.1π的通量绳组成,该值与在1 au处观测到的行星际通量绳的总扭曲角的最可能值一致。 Fe xiii 10747的线性极化从该模型计算出的直线显示了“变态”特征,高空天文台的日冕多通道旋光仪也观察到了该特征。我们还在Fe xiii 10747的视线速度上找到一个环形结构,这意味着热等离子体沿着空腔中的螺旋磁场结构流动。这些结果表明,空腔的磁性结构是高度扭曲的磁通绳,最终可能会爆发。还使用Fe xiii 10747?的强度比研究了腔的温度结构。和Fe x 6374?。

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