论文标题

网络喷气机作为太阳丝/细丝频道中反流动流的驱动程序

Network Jets as the Driver of Counter-Streaming Flows in a Solar Filament/Filament Channel

论文作者

Panesar, Navdeep K., Tiwari, Sanjiv K., Moore, Ronald L., Sterling, Alphonse C.

论文摘要

在高分辨率的SDO/AIA EUV图像中直接观察到一个小(100英寸 - 长的太阳细丝/细丝通道)中的反传输流量。我们将SDO/AIA,SDO/HMI和IRIS的图像结合在一起,以调查这些流量的驾驶机制。细丝/灯丝通道的两端均植根于磁性网络通道的边缘,磁性网络通道的边缘会影响细尺度的相对性通量斑块,(iii)复发的小尺度喷射(称为网络喷气机)出现在磁性网络的边缘出现在磁性网络的边缘上(v)一些网络喷气机似乎源于磁通取消的位置,网络通量和合并对面通量的合并,(vi)有些人在其基础上显示出明亮的态度,类似于冠状动脉喷气机的平均水平和平均频道的平均水平。 HALPHA细丝分别为4“和2.5”,与较早的EUV图像中的细丝相比,与HALPHA图像相比,我们的观察结果较宽,因此我们的观察表明,这些持续重复的反流动流来自网络喷气机,而这些驱动网络可能会通过磁性磁通触发而触发。

Counter-streaming flows in a small (100" -long) solar filament/filament channel are directly observed in high-resolution SDO/AIA EUV images of a region of enhanced magnetic network. We combine images from SDO/AIA, SDO/HMI and IRIS to investigate the driving mechanism of these flows. We find that: (i) counter-streaming flows are present along adjacent filament/filament channel threads for about 2 hours, (ii) both ends of the filament/filament channel are rooted at the edges of magnetic network flux lanes along which there are impinging fine-scale opposite-polarity flux patches, (iii) recurrent small-scale jets (known as network jets) occur at the edges of the magnetic network flux lanes at the ends of the filament/filament channel, (iv) the recurrent network jet eruptions clearly drive the counter-streaming flows along threads of the filament/filament channel, (v) some of the network jets appear to stem from sites of flux cancelation, between network flux and merging opposite-polarity flux, and (vi) some show brightening at their bases, analogous to the base brightening in coronal jets. The average speed of the counter-streaming flows along the filament/filament channel threads is 70 km/s. The average widths of the AIA filament/filament channel and the Halpha filament are 4" and 2.5", respectively, consistent with the earlier findings that filaments in EUV images are wider than in Halpha images. Thus, our observations show that the continually repeated counter-streaming flows come from network jets, and these driving network-jet eruptions are possibly prepared and triggered by magnetic flux cancelation.

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