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Solar prominence fine structure and dynamics

  • Thomas Berger
  • National Solar Observatory Sacramento Peak

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

4 Scopus citations

Abstract

We review recent observational and theoretical results on the fine structure and dynamics of solar prominences, beginning with an overview of prominence classifications, the proposal of possible new "funnel prominence" classification, and a discussion of the recent "solar tornado" findings. We then focus on quiescent prominences to review formation, down-flow dynamics, and the "prominence bubble" phenomena. We show new observations of the prominence bubble Rayleigh-Taylor instability triggered by a Kelvin-Helmholtz shear flow instability occurring along the bubble boundary. Finally we review recent studies on plasma composition of bubbles, emphasizing that differential emission measure (DEM) analysis offers a more quantitative analysis than photometric comparisons. In conclusion, we discuss the relation of prominences to coronal magnetic flux ropes, proposing that prominences can be understood as partially ionized condensations of plasma forming the return flow of a general magneto-thermal convection in the corona.

Original languageEnglish
Title of host publicationNature of Prominences and their Role in Space Weather
PublisherCambridge University Press
Pages15-29
Number of pages15
EditionS300
ISBN (Print)9781107045194
DOIs
StatePublished - Jun 2013
Externally publishedYes

Publication series

NameProceedings of the International Astronomical Union
NumberS300
Volume8
ISSN (Print)1743-9213
ISSN (Electronic)1743-9221

Keywords

  • Instabilities
  • Sun: atmospheric motions
  • Sun: chromospheres
  • Sun: filaments
  • Sun: magnetic fields
  • Sun: oscillations
  • Sun: prominences
  • Sun: UV radiation

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