论文标题
极性冠和高纬度细丝的环境中的花丝
Filigree in the Surroundings of Polar Crown and High-Latitude Filaments
论文作者
论文摘要
极性冠和高纬度细丝的高分辨率观察很少。我们提供了在高分辨率H $α$窄带滤波器和宽带图像中观察到的此类细丝的独特样本,这些样品是在西班牙特内里费岛的真空塔望远镜(VTT)的新快速相机系统中获得的。染色体望远镜(Chrotel)在H $α$,Ca II K和He I 10830A中提供了全盘的上下文观测。Helioseis震(HMI)(HMI)和大气成像组件(AIA)在板上提供了太阳能动力学(SDO)观测线(SDO),提供了线路线观测线(SDO),并提供了线路的近视磁性磁场和Ultoraviolets和Ulistraviolets(UV)1700 0000 0000 0000 A我们研究了极冠和高纬度细丝附近的小丝带,并将其位置与细丝脚尖处的磁浓度联系起来。亮点是在光球中以低纬度的方式研究的现象,但尚未在靠近波兰的安静网络中进行研究。我们检查了明亮点的尺寸,面积和偏心率,发现它们的形态与较低纬度的对应物非常相似,但它们的尺寸和区域较大。极冠状丝的脚部的明亮点优先位于较强的磁通浓度上,这与紫外线滤光片中观察到的超颗粒边界的明亮区域有关。在连续三天检查明亮点的演变表明,它们的量在丝状衰减时增加,这表明它们会影响细丝中包含的凉爽等离子体的平衡。
High-resolution observations of polar crown and high-latitude filaments are scarce. We present a unique sample of such filaments observed in high-resolution H$α$ narrow-band filtergrams and broad-band images, which were obtained with a new fast camera system at the Vacuum Tower Telescope (VTT), Tenerife, Spain. The Chromospheric Telescope (ChroTel) provided full-disk context observations in H$α$, Ca II K, and He I 10830 A. The Helioseismic and Magnetic Imager (HMI) and the Atmospheric Imaging Assembly (AIA) on board the Solar Dynamics Observatory (SDO) provided line-of-sight magnetograms and ultraviolet (UV) 1700 A filtergrams, respectively. We study filigree in the vicinity of polar crown and high-latitude filaments and relate their locations to magnetic concentrations at the filaments' footpoints. Bright points are a well studied phenomenon in the photosphere at low latitudes, but they were not yet studied in the quiet network close to the poles. We examine size, area, and eccentricity of bright points and find that their morphology is very similar to their counterparts at lower latitudes, but their sizes and areas are larger. Bright points at the footpoints of polar crown filaments are preferentially located at stronger magnetic flux concentrations, which are related to bright regions at the border of supergranules as observed in UV filtergrams. Examining the evolution of bright points on three consecutive days reveals that their amount increases while the filament decays, which indicates they impact the equilibrium of the cool plasma contained in filaments.