Witnessing a Large-scale Slipping Magnetic Reconnection along a Dimming Channel during a Solar Flare
Document Type
Article
Publication Date
6-20-2017
Abstract
We report the intriguing large-scale dynamic phenomena associated with the M6.5 flare (SOL2015-06-22T18:23) in NOAA active region 12371, observed by RHESSI, Fermi, and the Atmospheric Image Assembly (AIA) and Magnetic Imager (HMI) on the Solar Dynamics Observatory (SDO). The most interesting feature of this event is a third ribbon (R3) arising in the decay phase, propagating along a dimming channel (seen in EUV passbands) toward a neighboring sunspot. The propagation of R3 occurs in the presence of hard X-ray footpoint emission and is broadly visible at temperatures from 0.6 MK to over 10 MK through the differential emission measure analysis. The coronal loops then undergo an apparent slipping motion following the same path of R3, after a ∼80 minute delay. To understand the underlying physics, we investigate the magnetic configuration and the thermal structure of the flaring region. Our results are in favor of a slipping-Type reconnection followed by the thermodynamic evolution of coronal loops. In comparison with those previously reported slipping reconnection events, this one proceeds across a particularly long distance (∼60 Mm) over a long period of time (∼50 minutes) and shows two clearly distinguished phases: The propagation of the footpoint brightening driven by nonthermal particle injection and the apparent slippage of loops governed by plasma heating and subsequent cooling.
Identifier
85021243838 (Scopus)
Publication Title
Astrophysical Journal Letters
External Full Text Location
https://doi.org/10.3847/2041-8213/aa774d
e-ISSN
20418213
ISSN
20418205
Issue
2
Volume
842
Grant
NNG04EA00C
Fund Ref
Korean Federation of Science and Technology Societies
Recommended Citation
Jing, Ju; Liu, Rui; Cheung, Mark C.M.; Lee, Jeongwoo; Xu, Yan; Liu, Chang; Zhu, Chunming; and Wang, Haimin, "Witnessing a Large-scale Slipping Magnetic Reconnection along a Dimming Channel during a Solar Flare" (2017). Faculty Publications. 9519.
https://digitalcommons.njit.edu/fac_pubs/9519
