论文标题

源自CME Footpoint的太阳风流的成像证据

Imaging evidence for solar wind outflows originating from a CME footpoint

论文作者

Lörinčík, Juraj, Dudík, Jaroslav, Aulanier, Guillaume, Schmieder, Brigitte, Golub, Leon

论文摘要

我们报告了2015年4月28日的细丝爆发期间对冠状污染的血浆流出的大气成像组件(AIA)观察结果。细丝开始爆发后,形成了两条耀斑丝带,其中一根有一个可见的钩子,它们封闭了一个核心(双)变暗区域。沿着位于该调光的多个漏斗,在仪器的171和193滤波器通道中开始可见血浆的运动。在时间距离图中,这种运动产生了一个类似带状的图案,该图案持续了五个小时以上,并且哪些特征没有沿漏斗变化。因此,我们建议动议是与$ \ of \ \ of \ \ \ of70 $和140 km s $^{ - 1} $之间的速度相对应的流出的签名。有趣的是,发现流出及其速度的模式与我们在邻近普通冠状孔中观察到的模式相似。因此,流出很可能是CME诱导的沿扎根于调光区域的开放场结构流动的慢性太阳风的标志。此外,在针对三维磁重新连接的最新预测的背景下检查了环绕变暗区域的钩子的演变。观察结果表明,灯丝的脚尖是在转化为调光区域的过程中,与周围的檐篷重新连接。据我们所知,我们的观察结果呈现出来自调度区域的血浆流出的第一个成像证据。

We report on the Atmospheric Imaging Assembly (AIA) observations of plasma outflows originating in a coronal dimming during the 2015 April 28th filament eruption. After the filament started to erupt, two flare ribbons formed, one of which had a well-visible hook enclosing a core (twin) dimming region. Along multiple funnels located in this dimming, a motion of plasma directed outwards started to be visible in the 171 and 193 filter channels of the instrument. In time-distance diagrams, this motion generated a strip-like pattern, which lasted for more than five hours and which characteristics did not change along the funnel. We therefore suggest the motion to be a signature of outflows corresponding to velocities ranging between $\approx70$ and 140 km s$^{-1}$. Interestingly, the pattern of the outflows as well as their velocities were found to be similar to those we observed in a neighboring ordinary coronal hole. Therefore, the outflows were most likely a signature of a CME-induced slow solar wind flowing along the open-field structures rooted in the dimming region. Further, the evolution of the hook encircling the dimming region was examined in the context of the latest predictions imposed for the three-dimensional magnetic reconnection. The observations indicate that the filament's footpoints were, during their transformation to the dimming region, reconnecting with surrounding canopies. To our knowledge, our observations present the first imaging evidence for outflows of plasma from a dimming region.

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