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Formation of an Intermediate Filament Driven by Small-scale Magnetic Reconnection
Sun X(孙霞)1,2; Yan XL(闫晓理)2,3; Liang, Hongfei1; Xue ZK(薛志科)2,3; Wang JC(王金成)2,3; Yang LH(杨丽恒)2,3; Xu Z(徐喆)2,3; Yang LP(杨丽平)2; Peng Y(彭洋)2; Li QL(李巧玲)2,4; li, Zihan1; Zhang XS(张鑫生)2
发表期刊ASTROPHYSICAL JOURNAL
2023-02-01
卷号944期号:2
DOI10.3847/1538-4357/acaa3e
产权排序第2完成单位
收录类别SCI
摘要

We present the formation process of a filament in NOAA active region 12765 from 2020 June 5 to 8, using observations from the New Vacuum Solar Telescope, the Solar Dynamics Observatory, and the Global Oscillation Network Group. We found that intermittent small-scale magnetic reconnection occurs at the northern part of the filament, and the small-scale magnetic reconnection shows the characteristics of the oscillatory reconnections. During the magnetic reconnection process, a large amount of material is continuously injected into the filament channel. Furthermore, there are bidirectional inflow and outflow, current sheets, and bright cusp-shaped structures. The velocities of the material injections range from 17 to 183 km s(-1) with an average velocity of about 57 km s(-1). A total of 53 material injections were found from 03:10 UT on 2020 June 5 to 00:10 UT on June 8. The total mass carried by the injection events is about 7.39 x 10(14) g, and the total kinetic energy released through magnetic reconnection is approximately 3.09 x 10(21) J. The projection area of the filament increased from less than 1 x 10(2) Mm(2) to around 7 x 10(2) Mm(2). We conclude that the filament is formed by direct material injection into the filament channel due to the small-scale magnetic reconnections.

资助项目National Science Foundation of China (NSFC)[11873087] ; National Science Foundation of China (NSFC)[11973084] ; National Science Foundation of China (NSFC)[12003064] ; Yunnan Science Foundation of China[202201AT070194] ; Yunnan Science Foundation of China[202101AT070032] ; Key Research and Development Project of Yunnan Province[202003AD150019] ; Yunnan Key Laboratory of Solar Physics and Space Science[202205AG070009] ; Yunnan Key Laboratory of Solar Physics and Space Science[U1931116] ; Yunnan Science Foundation for Distinguished Young Scholars[202001AV070004] ; Youth Innovation Promotion Association, CAS[2019061] ; CAS Light of West China Program
项目资助者National Science Foundation of China (NSFC)[11873087, 11973084, 12003064] ; Yunnan Science Foundation of China[202201AT070194, 202101AT070032] ; Key Research and Development Project of Yunnan Province[202003AD150019] ; Yunnan Key Laboratory of Solar Physics and Space Science[202205AG070009, U1931116] ; Yunnan Science Foundation for Distinguished Young Scholars[202001AV070004] ; Youth Innovation Promotion Association, CAS[2019061] ; CAS Light of West China Program
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IOP Publishing Ltd
出版地TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
ISSN0004-637X
URL查看原文
WOS记录号WOS:000936397800001
WOS研究方向Astronomy & Astrophysics
WOS类目Astronomy & Astrophysics
关键词[WOS]ACTIVE-REGION FILAMENT ; SOLAR FILAMENT ; PROMINENCE FORMATION ; FLUX-ROPE ; MODELS ; ORIGIN ; FIELDS ; CONDENSATION ; SIMULATIONS ; OSCILLATION
引用统计
被引频次:3[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/114a53/25860
专题抚仙湖太阳观测和研究基地
通讯作者Sun X(孙霞)
作者单位1.Key Laboratory of Colleges and Universities in Yunnan Province for High-energy Astrophysics, Department of Physics, Yunnan Normal University, Kunming 650500, People's Republic of China;
2.Yunnan Observatories, Chinese Academy of Sciences, Kunming 650011, People's Republic of China;
3.Yunnan Key Laboratory of Solar Physics and Space Science, Kunming 650011, People's Republic of China;
4.Department of Physics, Yunnan University, Kunming 650091, People's Republic of 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
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GB/T 7714
Sun X,Yan XL,Liang, Hongfei,et al. Formation of an Intermediate Filament Driven by Small-scale Magnetic Reconnection[J]. ASTROPHYSICAL JOURNAL,2023,944(2).
APA Sun X.,Yan XL.,Liang, Hongfei.,Xue ZK.,Wang JC.,...&Zhang XS.(2023).Formation of an Intermediate Filament Driven by Small-scale Magnetic Reconnection.ASTROPHYSICAL JOURNAL,944(2).
MLA Sun X,et al."Formation of an Intermediate Filament Driven by Small-scale Magnetic Reconnection".ASTROPHYSICAL JOURNAL 944.2(2023).
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