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首页> 外文期刊>The Astrophysical journal >ON A CORONAL BLOWOUT JET: THE FIRST OBSERVATION OF A SIMULTANEOUSLY PRODUCED BUBBLE-LIKE CME AND A JET-LIKE CME IN A SOLAR EVENT
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ON A CORONAL BLOWOUT JET: THE FIRST OBSERVATION OF A SIMULTANEOUSLY PRODUCED BUBBLE-LIKE CME AND A JET-LIKE CME IN A SOLAR EVENT

机译:冠状井喷上的研究:一次事件中同时产生的类似气泡的CME和类似喷射的CME的首次观察

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The coronal blowout jet is a peculiar category among various jet phenomena, in which the sheared base arch, often carrying a small filament, experiences a miniature version of blowout eruption that produces large-scale coronal mass ejection (CME). In this paper, we report such a coronal blowout jet with high-resolution multi-wavelength and multi-angle observations taken from Solar Dynamics Observatory, Solar Terrestrial Relations Observatory, and Big Bear Solar Observatory. For the first time, we find that simultaneous bubble-like and jet-like CMEs were dynamically related to the blowout jet that showed cool and hot components next to each other. Our observational results indicate that (1) the cool component resulted from the eruption of the filament contained within the jet's base arch, and it further caused the bubble-like CME; (2) the jet-like CME was associated with the hot component, which was the outward moving heated plasma generated by the reconnection of the base arch and its ambient open field lines. On the other hand, bifurcation of the jet's cool component was also observed, which resulted from the uncoupling of the erupting filament's two legs that were highly twisted at the very beginning. Based on these results, we propose a model to interpret the coronal blowout jet, in which the external reconnection not only produces the jet-like CME, but also leads to the rising of the filament. Subsequently, internal reconnection starts underneath the rising filament and thereby causes the bubble-like CME.
机译:日冕爆裂喷流是各种射流现象中的一个特殊类别,其中经常带有小细丝的剪力基弓经历了微型喷发,产生了大规模的日冕物质抛射(CME)。在本文中,我们报道了这样的日冕井喷喷头,它具有从太阳动力学天文台,太阳陆地关系天文台和大熊太阳天文台获得的高分辨率多波长和多角度观测结果。首次,我们发现同时出现气泡状和喷射状的CME与吹出的射流动态相关,吹出的射流显示出冷,热成分彼此相邻。我们的观测结果表明:(1)冷却成分是由喷流基弓中包含的细丝喷发引起的,并进一步引起了气泡状CME; (2)喷射状的CME与热成分有关,热成分是由基弓及其周围的开放磁场线重新连接而产生的向外移动的加热等离子体。另一方面,还观察到喷射器的冷成分分叉,这是由于喷丝的两条腿在刚开始时高度扭曲而解开。基于这些结果,我们提出了一个模型来解释日冕喷吹,在这种模型中,外部重新连接不仅会产生喷射状的CME,而且还会导致灯丝上升。随后,内部重新连接在上升的灯丝下方开始,从而导致气泡状CME。

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