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Simultaneous Observations of p-mode Light Walls and Magnetic Reconnection Ejections above Sunspot Light Bridges

机译:P模式光壁的同时观察和太阳光桥上方的磁重新连接喷射

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Recent high-resolution observations from the Interface Region Imaging Spectrograph reveal bright wall-shaped structures in active regions (ARs), especially above sunspot light bridges. Their most prominent feature is the bright oscillating front in the 1400/1330 ? channel. These structures are named light walls and are often interpreted to be driven by p-mode waves. Above the light bridge of AR 12222 on 2014 December 06, we observed intermittent ejections superimposed on an oscillating light wall in the 1400 ? passband. At the base location of each ejection, the emission enhancement was detected in the Solar Dynamics Observatory 1600 ? channel. Thus, we suggest that in wall bases (light bridges), in addition to the leaked p-mode waves consistently driving the oscillating light wall, magnetic reconnection could happen intermittently at some locations and eject the heated plasma upward. Similarly, in the second event occurring in AR 12371 on 2015 June 16, a jet was simultaneously detected in addition to the light wall with a wave-shaped bright front above the light bridge. At the footpoint of this jet, lasting brightening was observed, implying magnetic reconnection at the base. We propose that in these events, two mechanisms, p-mode waves and magnetic reconnection, simultaneously play roles in the light bridge, and lead to the distinct kinetic features of the light walls and the ejection-like activities, respectively. To illustrate the two mechanisms and their resulting activities above light bridges, in this study we present a cartoon model.
机译:近期从界面区域成像光谱仪的高分辨率观测显示有源区(ARS)中的明亮壁形结构,尤其是太阳黑子光桥。他们最突出的特点是1400/1330的明亮振荡前线?渠道。这些结构被称为光壁,并且通常被解释为由P模式波驱动。在2014年12月12222的AR 12222的灯塔上方,我们观察到在1400的振荡壁上叠加在振荡壁上的间歇喷射?通带。在每个喷射的基地位置,在太阳能动力学天文台1600中检测到发射增强?渠道。因此,我们建议在壁碱基(光桥)中,除了泄漏的P模式波,始终驱动振荡光壁,磁性重新连接可能在某个位置间歇地发生并将加热的等离子体向上喷射。类似地,在2015年6月16日的AR 12371中发生的第二事件中,除了在光桥上方的光壁之外,还同时检测射流。在该射流的距离,观察到持久的增白,暗示底座上的磁重新连接。我们提出在这些事件中,两个机制,P模式波和磁性重新连接,同时在光桥中发挥作用,并且分别导致光壁的不同动力学特征和射出的活动。为了说明光桥上方的两个机制及其所产生的活动,在这项研究中我们介绍了一种卡通模式。

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