Spatial distributions of extreme-ultraviolet brightenings in the quiet Sun

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
C. J. Nelson, L. A. Hayes, D. Müller, S. Musset, N. Freij, F. Auchère, R. Aznar Cuadrado, K. Barczynski, E. Buchlin, L. Harra, D. M. Long, S. Parenti, H. Peter, U. Schühle, P. Smith, L. Teriaca, C. Verbeeck, A. N. Zhukov, D. Berghmans
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Abstract

Context. The identification of large numbers of localised transient extreme ultraviolet (EUV) brightenings, on very small spatial scales, in the quiet Sun corona has been one of the key early results from Solar Orbiter. However, there are still a great deal of unknowns about these events.Aims. In this work, we aim to better understand EUV brightenings by investigating their spatial distributions. Specifically, we have investigated whether they occur co-spatially with specific line-of-sight (LoS) magnetic field topologies in the photospheric network.Methods. We detected the EUV brightenings in this work using an automated algorithm applied to a high-cadence (3 s) dataset sampled over ∼30 minutes on 8 March 2022 by the Extreme Ultraviolet Imager’s 17.4 nm EUV High Resolution Imager (HRIEUV). Data from the Solar Dynamics Observatory’s Helioseismic and Magnetic Imager (SDO/HMI) and Atmospheric Imaging Assembly (SDO/AIA) were used to provide context on the LoS magnetic field and for alignment purposes, respectively.Results. We found a total of 5064 EUV brightenings within this dataset that are directly comparable to events reported previously in the literature. These events occurred within around 0.015–0.020% of pixels for any given frame. We compared eight different thresholds to split the EUV brightenings into four different categories related to the LoS magnetic field. Using our preferred threshold, we found that 627 EUV brightenings (12.4%) occurred co-spatially with strong bipolar configurations and 967 EUV brightenings (19.1%) occurred in weak field regions. Fewer than 10% of EUV brightenings occurred co-spatially with the unipolar LoS magnetic field, no matter what threshold was used. Of the 627 strong bipolar EUV Brightenings, 54 were found to occur co-spatially with cancellation, whilst 57 occurred co-spatially with emergence.Conclusions. EUV brightenings are primarily found to occur co-spatially with the strong LoS magnetic field in the photospheric network. However, they do not predominantly occur co-spatially with (cancelling) bi-poles.
安静太阳中极紫外线亮度的空间分布
背景。在安静的日冕中发现了大量空间尺度很小的局部瞬态极紫外(EUV)亮点,这是太阳轨道器的早期重要成果之一。在这项工作中,我们旨在通过研究极紫外线亮斑的空间分布,更好地了解它们。具体来说,我们研究了它们是否与光层网络中特定的视线(LoS)磁场拓扑结构同时出现。在这项工作中,我们使用一种自动算法来探测超紫外线增亮,该算法应用于 2022 年 3 月 8 日由极紫外成像仪的 17.4 nm 超紫外线高分辨率成像仪(HRIEUV)在 30 分钟内采样的高信噪比(3 秒)数据集。太阳动力学天文台的日震和磁成像仪(SDO/HMI)和大气成像组件(SDO/AIA)的数据分别用于提供LoS磁场的背景情况和对准目的。我们在这一数据集中共发现了 5064 个 EUV 增亮现象,这些现象与之前文献中报道的事件具有直接可比性。这些事件发生在任何给定帧的约 0.015-0.020% 的像素范围内。我们比较了八种不同的阈值,将 EUV 增亮分成与 LoS 磁场有关的四个不同类别。使用我们首选的阈值,我们发现有 627 个 EUV 亮点(12.4%)与强双极配置同时出现,967 个 EUV 亮点(19.1%)出现在弱磁场区域。无论使用哪种阈值,与单极 LoS 磁场同时出现的紫外线增亮都不到 10%。在 627 个强双极性极紫外光亮点中,有 54 个亮点与取消磁场同时出现,57 个亮点与出现磁场同时出现。超紫外增亮主要与光球层网络中的强 LoS 磁场同时出现。然而,它们并不主要与(抵消)双极子同时出现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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