English

Transient rotation of photospheric vector magnetic fields associated with a solar flare

Solar and Stellar Astrophysics 2018-01-11 v1

Abstract

As one of the most violent eruptions on the Sun, flares are believed to be powered by magnetic reconnection. The fundamental physics involving the release, transfer and deposition of energy have been studied extensively. Taking advantage of the unprecedented resolution provided by the 1.6-m Goode Solar Telescope, here we show a sudden rotation of vector magnetic fields, about 12^{\circ}-20^{\circ} counterclockwise, associated with a flare. Unlike the permanent changes reported previously, the azimuth-angle change is transient and co-spatial/temporal with Hα\alpha emission. The measured azimuth angle becomes closer to that in potential fields suggesting untwist of flare loops. The magnetograms were obtained in the near infrared at 1.56~μ\mum, which is minimally affected by flare emission and no intensity profile change was detected. We believe that these transient changes are real and discuss the possible explanations in which the high energy electron beams or AlfveˊnAlfv\acute{e}n waves play a crucial role.

Keywords

Cite

@article{arxiv.1801.03171,
  title  = {Transient rotation of photospheric vector magnetic fields associated with a solar flare},
  author = {Yan Xu and Wenda Cao and Kwangsu Ahn and Ju Jing and Chang Liu and Jongchul Chae and Nengyi Huang and Na Deng and Dale E. Gary and Haimin Wang},
  journal= {arXiv preprint arXiv:1801.03171},
  year   = {2018}
}

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