中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
MAGNETIC RECONNECTION: FROM "OPEN" EXTREME-ULTRAVIOLET LOOPS TO CLOSED POST-FLARE ONES OBSERVED BY SDO

文献类型:期刊论文

作者Zhang, Jun1; Yang, Shuhong1; Li, Ting1; Zhang, Yuzong1; Li, Leping1; Jiang, Chaowei2
刊名ASTROPHYSICAL JOURNAL
出版日期2013-10-10
卷号776期号:1页码:57
ISSN号0004-639X
关键词magnetic reconnection Sun: activity Sun: atmosphere Sun: corona
通讯作者北京8701信箱
中文摘要We employ Solar Dynamics Observatory observations and select three well-observed events including two flares and one extreme-ultraviolet (EUV) brightening. During the three events, the EUV loops clearly changed. One event was related to a major solar flare that took place on 2012 July 12 in active region NOAA AR 11520. "Open" EUV loops rooted in a facula of the AR deflected to the post-flare loops and then merged with them while the flare ribbon approached the facula. Meanwhile, "open" EUV loops rooted in a pore disappeared from top to bottom as the flare ribbon swept over the pore. The loop evolution was similar in the low-temperature channels (e.g., 171 Å) and the high-temperature channels (e.g., 94 Å). The coronal magnetic fields extrapolated from the photospheric vector magnetograms also show that the fields apparently "open" prior to the flare become closed after it. The other two events were associated with a B1.1 flare on 2010 May 24 and an EUV brightening on 2013 January 03, respectively. During both of these two events, some "open" loops either disappeared or darkened before the formation of new closed loops. We suggest that the observations reproduce the picture predicted by the standard magnetic reconnection model: "open" magnetic fields become closed due to reconnection, manifesting as a transformation from "open" EUV loops to closed post-flare ones.
英文摘要We employ Solar Dynamics Observatory observations and select three well-observed events including two flares and one extreme-ultraviolet (EUV) brightening. During the three events, the EUV loops clearly changed. One event was related to a major solar flare that took place on 2012 July 12 in active region NOAA AR 11520. "Open" EUV loops rooted in a facula of the AR deflected to the post-flare loops and then merged with them while the flare ribbon approached the facula. Meanwhile, "open" EUV loops rooted in a pore disappeared from top to bottom as the flare ribbon swept over the pore. The loop evolution was similar in the low-temperature channels (e. g., 171 angstrom) and the high-temperature channels (e. g., 94 angstrom). The coronal magnetic fields extrapolated from the photospheric vector magnetograms also show that the fields apparently "open" prior to the flare become closed after it. The other two events were associated with a B1.1 flare on 2010 May 24 and an EUV brightening on 2013 January 03, respectively. During both of these two events, some "open" loops either disappeared or darkened before the formation of new closed loops. We suggest that the observations reproduce the picture predicted by the standard magnetic reconnection model: "open" magnetic fields become closed due to reconnection, manifesting as a transformation from "open" EUV loops to closed post-flare ones.
学科主题空间物理
语种英语
版本出版稿
源URL[http://ir.cssar.ac.cn/handle/122/1492]  
专题国家空间科学中心_空间科学部
作者单位1.Chinese Acad Sci, Key Lab Solar Act, Natl Astron Observ, Beijing 100012, Peoples R China
2.Chinese Acad Sci, Ctr Space Sci & Appl Res, State Key Lab Space Weather, SIGMA Weather Grp, Beijing 100190, Peoples R China
推荐引用方式
GB/T 7714
Zhang, Jun,Yang, Shuhong,Li, Ting,et al. MAGNETIC RECONNECTION: FROM "OPEN" EXTREME-ULTRAVIOLET LOOPS TO CLOSED POST-FLARE ONES OBSERVED BY SDO[J]. ASTROPHYSICAL JOURNAL,2013,776(1):57.
APA Zhang, Jun,Yang, Shuhong,Li, Ting,Zhang, Yuzong,Li, Leping,&Jiang, Chaowei.(2013).MAGNETIC RECONNECTION: FROM "OPEN" EXTREME-ULTRAVIOLET LOOPS TO CLOSED POST-FLARE ONES OBSERVED BY SDO.ASTROPHYSICAL JOURNAL,776(1),57.
MLA Zhang, Jun,et al."MAGNETIC RECONNECTION: FROM "OPEN" EXTREME-ULTRAVIOLET LOOPS TO CLOSED POST-FLARE ONES OBSERVED BY SDO".ASTROPHYSICAL JOURNAL 776.1(2013):57.

入库方式: OAI收割

来源:国家空间科学中心

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