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Decay of Activity Complexes, Formation of Unipolar Magnetic Regions, and Coronal Holes in Their Causal Relation

机译:活性复合物的衰变,单极磁性区的形成以及因果关系中的冠状孔

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摘要

The peculiar development of solar activity in the current cycle resulted in an asynchronous reversal of the Sun's polar fields. The asymmetry is also observed in the formation of polar coronal holes. A stable coronal hole was first formed at the South Pole, despite the later polar-field reversal there. The aim of this study is to understand the processes making this situation possible. Synoptic magnetic maps from the Global Oscillation Network Group and corresponding coronal-hole maps from the Extreme ultraviolet Imaging Telescope onboard the Solar and Heliospheric Observatory and the Atmospheric Imaging Assembly onboard the Solar Dynamics Observatory are analyzed here to study the causal relationship between the decay of activity complexes, evolution of large-scale magnetic fields, and formation of coronal holes. Ensembles of coronal holes associated with decaying active regions and activity complexes are presented. These ensembles take part in global rearrangements of the Sun's open magnetic flux. In particular, the south polar coronal hole was formed from an ensemble of coronal holes that came into existence after the decay of multiple activity complexes observed during 2014.
机译:当前周期中太阳活动的特殊发展导致太阳极场的异步反转。在极地冠状孔的形成中也观察到不对称性。尽管后来极场反转,南极还是首次形成了稳定的日冕孔。这项研究的目的是了解使这种情况成为可能的过程。本文分析了全球涛动网络集团的天气磁图和太阳和日球天文台的极紫外成像望远镜以及太阳动力学天文台的大气成像组件的相应日冕孔图,以研究活动衰减之间的因果关系配合物,大范围磁场的演化以及日冕孔的形成。介绍了与衰变的活性区域和活性复合物相关的冠状孔的集合体。这些合奏参与了太阳开放磁通量的全局重排。特别是,南极冠冕洞是由一系列冠冕洞形成的,这些冠冕洞是在2014年观察到的多种活性复合物衰减后才形成的。

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