论文标题

通过间歇性磁相互作用形成和立即形成小细丝

Formation and Immediate Deformation of a Small Filament Through Intermittent Magnetic Interactions

论文作者

Zheng, Ruisheng, Zhang, Liang, Rao, Changhui, Wang, Bing, Chen, Huadong, Zhong, Libo, Chen, Yao

论文摘要

通常认为,细丝形成涉及磁能积累的过程。但是,在本文中,我们讨论了细丝不会爆发的想法,并且只有在逐渐释放存储的磁能时会变形。结合来自太阳能动力学观测站和其他仪器的高质量观​​测,我们介绍了2020年4月28日至30日在活性区域(AR)12760中的小细丝(F1)的形成和立即变形。在细丝形成之前,连续三个连续的偶极子迅速在AR 12760的彼此之间进行了分离式的脉冲互动。因此,亮丽出现在上山的气氛中。随后,由于F1的相邻末端和附近细丝(F2)附近发生的磁通量的连续取消(F2),因此发生了磁构型发生在F1和F2之间的间歇性发生。最后,F1减少了剪切,F2变短了。所有结果表明,F1的形成与新兴偶极子和预先存在的磁极的序列之间的间歇相互作用密切相关,而F1的直接变形与F1和F2之间的间歇相互作用密切相关。我们还建议,由连续磁性活动(磁通量出现,取消和收敛)驱动的间歇性磁相互作用在细丝的形成和变形中起着重要作用。

It is generally believed that filament formation involves a process of the accumulation of magnetic energy. However, in this paper we discuss the idea that filaments will not erupt and will only deform when the stored magnetic energy is released gradually. Combining high-quality observations from Solar Dynamics Observatory and other instruments, we present the formation and immediate deformation of a small filament (F1) in the active region (AR) 12760 on 28-30 April 2020. Before the filament formation, three successive dipoles quickly emerged with separation motions in the center of AR 12760. Due to the magnetic interaction between magnetic dipoles and pre-existing positive polarities, coronal brightenings consequently appeared in the overlying atmosphere. Subsequently, because of the continuous cancellation of magnetic flux that happened around the adjacent ends of F1 and another nearby filament (F2), the magnetic reconections occurred intermittently occurred between F1 and F2. Finally, F1 lessened in the shear, and F2 became shorter. All the results show that the formation of F1 was closely associated with intermittent interactions between the sequence of emerging dipoles and pre-existing magnetic polarities, and the immediate deformation of F1 was intimately related to intermittent interactions between F1 and F2. We also suggest that the intermittent magnetic interactions driven by the continuous magnetic activities (magnetic-flux emergence, cancellation, and convergence) play an important role in the formation and deformation of filaments.

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