English

Sequential Remote Brightenings and Co-spatial Fast Downflows during Two Successive Flares

Solar and Stellar Astrophysics 2023-06-29 v1

Abstract

Remote brightenings often appear at outskirts of source active regions of solar eruptive events, nevertheless, their origin remains to be ascertained. In this study, we report imaging and spectroscopic observations of sequential remote brightenings with a combination of Hα\alpha Imaging Spectrograph (HIS) onboard the Chinese Hα\alpha Solar Explorer (CHASE), which is the first space-based solar telescope of China, and the Solar Dynamics Observatory. It is found that, during two successive M-class flares occurring on 2022 August 17, multiple ribbon-like brightenings appeared in sequence away from the flaring active region. Meanwhile, abundant cool filament materials moved downward to the sequential remote brightenings as visible at the Hα\alpha red wing with a line-of-sight speed up to 70 km s1^{-1}. The extrapolated three-dimensional magnetic field configuration shows that the sequential remote brightenings correspond to the footpoints of closed ambient field lines whose conjugate footpoints are rooted in the main flare site. We suggest that the sequential remote brightenings are most likely caused by the heating of interchange reconnection between the erupting flux rope and closed ambient field, during which the rope-hosting filament materials are transferred to the periphery of flaring active region along the closed ambient field rather than to the interplanetary space like in the scenario of the slow solar wind formation.

Keywords

Cite

@article{arxiv.2306.15991,
  title  = {Sequential Remote Brightenings and Co-spatial Fast Downflows during Two Successive Flares},
  author = {B. T. Wang and X. Cheng and C. Li and J. Chen and M. D. Ding},
  journal= {arXiv preprint arXiv:2306.15991},
  year   = {2023}
}
R2 v1 2026-06-28T11:16:29.644Z