新出现的通量区域中拉长颗粒和拉伸暗道的性质

Jincheng Wang, Xiaoli Yan
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摘要

在这项研究中,我们探索了新出现的反黑尔活动区 NOAA 12720 中的拉长颗粒和拉伸暗道。利用新真空太阳望远镜的高分辨率观测,我们发现了与位于两个主要对立磁极之间的新磁通量的出现有关的拉长颗粒和拉伸暗道的普遍存在。这些拉长的颗粒和拉伸的暗道呈现出强横向磁场的排列和明显的倾角。这些特征的端点彼此分离,它们的中点主要表现为光球中的蓝移信号。这表明拉长的颗粒和拉伸的暗层与新出现的通量之间存在密切联系。此外,我们还发现,与拉长颗粒相比,拉伸暗道与强蓝移和光球层横向磁场的相关性更明显。这些拉伸暗道内的横向磁场达到约 300 到 400 G 的磁级,其倾角沿着拉伸暗道的轨迹呈现出 "拱形 "模式。根据这些观测到的特征,我们推断在被拉伸的暗道上存在一个 "拱形 "的通量管。因此,我们得出结论,拉伸的暗道很可能是新出现的通量管的表现,而拉长的颗粒可能与新出现的通量管之间的间隙相对应。
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The nature of elongated granulations and stretched dark lanes in a newly emerging flux region
In this study, we explore the elongated granulations and stretched dark lanes within the emerging anti-Hale active region NOAA 12720. Utilizing high-resolution observations from the New Vacuum Solar Telescope, we discern a prevalence of elongated granules and stretched dark lanes associated with the emergence of new magnetic flux positioned between two primary opposing magnetic polarities. These elongated granulations and stretched dark lanes exhibit an alignment of strong transverse fields and a significant inclination angle. The endpoints of these features separate from each other, with their midpoints predominantly characterized by blue-shifted signals in the photosphere. This suggests a close association between elongated granules and stretched dark lanes with the newly emerging flux. Additionally, we find that the stretched dark lanes display a more pronounced correlation with strong blue shifts and photospheric transverse magnetic fields compared to the elongated granulations. The transverse magnetic field within these stretched dark lanes reaches magnitudes of approximately 300 to 400 G, and the inclination angle demonstrates an "arch-like" pattern along the trajectory of the stretched dark lane. Based on these observed characteristics, we infer the presence of an emerging flux tube with an "arch-like" shape situated along the stretched dark lane. Consequently, we conclude that the stretched dark lanes likely represent manifestations of the emerging flux tube, while the elongated granulations may correspond to the gaps between the emerging flux tubes.
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