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Lifecycle of a Large-Scale Polar Coronal Pseudostreamer/Cavity System

机译:大型太阳日冕伪流光/腔系统的生命周期

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We report on an exceptional large-scale coronal pseudostreamer/cavity system in the southern polar region of the solar corona that was visible for approximately a year starting in February 2014. It is unusual to see such a large closed-field structure embedded within the open polar coronal hole. We investigate this structure to document its formation, evolution and eventually its shrinking process using data from both the PROBA2/SWAP and SDO/AIA EUV imagers. In particular, we used EUV tomography to find the overall shape and internal structure of the pseudostreamer and to determine its 3D temperature and density structure using DEM analysis. We found that the cavity temperature is extremely stable with time and is essentially at a similar or slightly hotter temperature than the surrounding pseudostreamer. Two regimes in cavity thermal properties were observed: during the first 5 months of observation, we found lower density depletion and highly multi-thermal plasma, while after the pseudostreamer became stable and slowly shrank, the depletion was more pronounced and the plasma was less multithermal. As the thermodynamic properties are strongly correlated with the magnetic structure, these results provide constraints on both the trigger of CMEs and the processes that maintain cavities stability for such a long lifetime.
机译:我们报告了在太阳日冕的南极地区出现的异常大型日冕假流星/空洞系统,从2014年2月开始,大约一年就可以看到该系统。罕见地看到如此巨大的封闭场结构嵌入在露天区域极冠状孔。我们使用PROBA2 / SWAP和SDO / AIA EUV成像仪的数据来研究此结构,以记录其形成,演变以及最终的收缩过程。特别是,我们使用EUV层析成像来查找伪拖缆的整体形状和内部结构,并使用DEM分析确定其3D温度和密度结构。我们发现,腔温度随时间极其稳定,并且基本上处于与周围的伪流线相似或稍高的温度。观察到了两种腔热特性:在观察的前5个月中,我们发现较低的密度损耗和高度多热的等离子体,而the流稳定并缓慢收缩之后,损耗更明显,等离子体的多热较少。由于热力学性质与磁性结构密切相关,因此这些结果对CME的触发和保持腔体稳定性如此长寿命的过程都提供了限制。

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