论文标题

黑子半丝细丝侵入灯桥,并产生的重新连接喷气机

Sunspot penumbral filaments intruding into a light bridge and the resultant reconnection jets

论文作者

Hou, Y. J., Li, T., Zhong, S. H., Yang, S. H., Guo, Y. L., Li, X. H., Zhang, J., Xiang, Y. Y.

论文摘要

半丝和轻桥是黑子内部的突出结构,对于理解黑子磁场的性质和下面的磁性转换非常重要。我们调查了一个有趣的事件,其中几种半细丝侵入了黑子灯桥,以便更多地洞悉黑子半细丝和光桥的磁场及其相互作用。研究了侵入光桥并研究结果喷射的半细丝的发射,运动学和磁性拓扑特性。在轻桥的西部,侵入的半细丝渗透到光桥两侧的遮阳篷中,还检测到了两组喷气机。喷气机与侵入的细丝分享了相同的预测形态,并伴有间歇性的脚步亮度。同时的光谱成像观测值为磁重新连接相关的加热和双向流的存在提供了令人信服的证据,并有助于测量喷气机的矢量速度。此外,非无线电场外推结果揭示了沿着入侵的半丝细丝沿着侵入性的磁场强烈而高度倾斜的磁场,与从喷气机的矢量速度推导的结果一致。因此,我们建议喷气机可能是由灯桥内出现的磁场与侵入细丝的几乎水平田之间的磁重连接引起的。然后将它们沿着更强的细丝田向外弹出。我们的研究表明,磁性重新连接可能发生在灯桥内的半丝丝场和新兴场之间,并沿着更强的细丝场产生喷气机。这些结果进一步补充了黑子内磁重新连接和动态活性的研究。

Penumbral filaments and light bridges are prominent structures inside sunspots and are important for understanding the nature of sunspot magnetic fields and magneto-convection underneath. We investigate an interesting event where several penumbral filaments intruded into a sunspot light bridge for more insights into magnetic fields of the sunspot penumbral filament and light bridge, as well as their interaction. The emission, kinematic, and magnetic topology characteristics of the penumbral filaments intruding into the light bridge and the resultant jets are studied. At the west part of the light bridge, the intruding penumbral filaments penetrated into the umbrae on both sides of the light bridge, and two groups of jets were also detected. The jets shared the same projected morphology with the intruding filaments and were accompanied by intermittent footpoint brightenings. Simultaneous spectral imaging observations provide convincing evidences for the presences of magnetic reconnection related heating and bidirectional flows near the jet bases and contribute to measuring vector velocities of the jets. Additionally, nonlinear force-free field extrapolation results reveal strong and highly inclined magnetic fields along the intruding penumbral filaments, consistent well with the results deduced from the vector velocities of the jets. Therefore, we propose that the jets could be caused by magnetic reconnections between emerging fields within the light bridge and the nearly horizontal fields of intruding filaments. They were then ejected outward along the stronger filaments fields. Our study indicates that magnetic reconnection could occur between the penumbral filament fields and emerging fields within light bridge and produce jets along the stronger filament fields. These results further complement the study of magnetic reconnection and dynamic activities within the sunspot.

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