YNAO OpenIR  > 选址与日冕观测组
Stereoscopic diagnosing of a filament-cavity flux rope system by tracing the path of a two-sided-loop jet
Tan S(谭宋)1,2; Shen YD(申远灯)1,2,3,4; Zhou XP(周新平)1,2; Duan YD(段雅丹)1,2; Tang ZH(汤泽浩)1; Zhou CR(周承瑞)1,2; Yao SR(姚苏芮)1
发表期刊MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
2022-10
卷号516期号:1页码:L12-L17
DOI10.1093/mnrasl/slac069
产权排序第1完成单位
收录类别SCI
关键词Sun: activity Sun: coronal mass ejections (CMEs) Sun: filaments prominences
摘要

The fine magnetic structure is vitally important to understanding the formation, stabilization, and eruption of solar filaments, but so far, it is still an open question yet to be resolved. Using stereoscopic observations taken by the Solar Dynamics Observatory and Solar TErrestrial RElations Obsevatory, we studied the generation mechanism of a two-sided-loop jet (TJ) and the ejection process of the jet plasma into the overlying filament-cavity system. We find that the generation of the two-sided-loop jet was due to the magnetic reconnection between an emerging flux loop and the overlying filament. The jet's two arms ejected along the filament axis during the initial stage. Then, the north arm bifurcated into two parts at about 50 Mm from the reconnection site. After the bifurcation, the two bifurcated parts were along the filament axis and the cavity which hosted the filament, respectively. By tracing the ejecting plasma flows of the TJ inside the filament, we not only measured that the magnetic twist stored in the filament was at least 5pbut also found that the fine magnetic structure of the filament-cavity flux rope system is in well agreement with the theoretical results of Magnetic flux rope models.

资助项目Natural Science Foundation of China[11922307] ; Natural Science Foundation of China[12173083] ; Natural Science Foundation of China[11773068] ; Natural Science Foundation of China[11633008] ; Yunnan Science Foundation for Distinguished Young Scholars[202101AV070004] ; National Key R&D Program of China[2019YFA0405000] ; Specialized Research Fund for State Key Laboratories ; West Light Foundation of Chinese Academy of Sciences ; Yunnan Key Laboratory of Solar Physics and Space Science[202205AG07009]
项目资助者Natural Science Foundation of China[11922307, 12173083, 11773068, 11633008] ; Yunnan Science Foundation for Distinguished Young Scholars[202101AV070004] ; National Key R&D Program of China[2019YFA0405000] ; Specialized Research Fund for State Key Laboratories ; West Light Foundation of Chinese Academy of Sciences ; Yunnan Key Laboratory of Solar Physics and Space Science[202205AG07009]
语种英语
学科领域天文学 ; 太阳与太阳系 ; 太阳物理学
文章类型Article
出版者OXFORD UNIV PRESS
出版地GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
ISSN0035-8711
URL查看原文
WOS记录号WOS:000934001900003
WOS研究方向Astronomy & Astrophysics
WOS类目Astronomy & Astrophysics
关键词[WOS]X-RAY JETS ; H-ALPHA SURGES ; MAGNETIC RECONNECTION ; BLOWOUT JET ; SOLAR ; ERUPTION ; DRIVEN ; MODELS ; ORIGIN
引用统计
被引频次:5[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
版本出版稿
条目标识符http://ir.ynao.ac.cn/handle/114a53/25841
专题选址与日冕观测组
通讯作者Shen YD(申远灯)
作者单位1.Yunnan Observatories, Chinese Academy of Sciences, Kunming 650216, China;
2.University of Chinese Academy of Sciences, School of Astronomy and Spce Science, Beijing 100049, China;
3.State Key Laboratory of Space Weather, Chinese Academy of Sciences, Beijing 100190, China;
4.Yunnan Key Laboratory of Solar Physics and Space Science, Kunming 650216, China
第一作者单位中国科学院云南天文台
通讯作者单位中国科学院云南天文台
推荐引用方式
GB/T 7714
Tan S,Shen YD,Zhou XP,et al. Stereoscopic diagnosing of a filament-cavity flux rope system by tracing the path of a two-sided-loop jet[J]. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY,2022,516(1):L12-L17.
APA Tan S.,Shen YD.,Zhou XP.,Duan YD.,Tang ZH.,...&Yao SR.(2022).Stereoscopic diagnosing of a filament-cavity flux rope system by tracing the path of a two-sided-loop jet.MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY,516(1),L12-L17.
MLA Tan S,et al."Stereoscopic diagnosing of a filament-cavity flux rope system by tracing the path of a two-sided-loop jet".MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY 516.1(2022):L12-L17.
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