TORNADO-LIKE EVOLUTION OF A KINK-UNSTABLE SOLAR PROMINENCE

  • Wang W
  • Liu R
  • Wang Y
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Abstract

We report on the tornado-like evolution of a quiescent prominence on 2014 November 1. The eastern section of the prominence first rose slowly, transforming into an arch-shaped structure as high as ∼150 Mm above the limb; the arch then writhed moderately in a left-handed sense, while the original dark prominence material emitted in the Fe ix 171 Å passband, and a braided structure appeared at the eastern edge of the warped arch. The unraveling of the braided structure was associated with a transient brightening in the EUV and apparently contributed to the formation of a curtain-like structure (CLS). The CLS consisted of myriad thread-like loops rotating counterclockwise about the vertical if viewed from above. Heated prominence material was observed to slide along these loops and land outside the filament channel. The tornado eventually disintegrated and the remaining material flew along a left-handed helical path constituting approximately a full turn, as corroborated through stereoscopic reconstruction, into the cavity of the stable, western section of the prominence. We suggest that the tornado-like evolution of the prominence was governed by the helical kink instability, and that the CLS formed through magnetic reconnections between the prominence field and the overlying coronal field.

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APA

Wang, W., Liu, R., & Wang, Y. (2017). TORNADO-LIKE EVOLUTION OF A KINK-UNSTABLE SOLAR PROMINENCE. The Astrophysical Journal, 834(1), 38. https://doi.org/10.3847/1538-4357/834/1/38

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