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Prominence formation associated with an emerging helical flux rope

  • Takenori J. Okamoto
  • , Saku Tsuneta
  • , Bruce W. Lites
  • , Masahito Kubo
  • , Takaaki Yokoyama
  • , Thomas E. Berger
  • , Kiyoshi Ichimoto
  • , Yukio Katsukawa
  • , Shin'Ichi Nagata
  • , Kazunari Shibata
  • , Toshifumi Shimizu
  • , Richard A. Shine
  • , Yoshinori Suematsu
  • , Theodore D. Tarbell
  • , Alan M. Title
  • National Institutes of Natural Sciences - National Astronomical Observatory of Japan
  • National Center for Atmospheric Research
  • The University of Tokyo
  • Lockheed Martin
  • Kyoto University
  • JAXA Institute of Space and Astronautical Science

Research output: Contribution to journalArticlepeer-review

79 Scopus citations

Abstract

The formation and evolution process and magnetic configuration of solar prominences remain unclear. In order to study the formation process of prominences, we examine continuous observations of a prominence in NOAA AR 10953 with the Solar Optical Telescope on the Hinode satellite. As reported in our previous Letter, we find a signature suggesting that a helical flux rope emerges from below the photosphere under a pre-existing prominence. Here we investigate more detailed properties and photospheric indications of the emerging helical flux rope, and discuss their relationship to the formation of the prominence. Our main conclusions are: (1) a dark region with absence of strong vertical magnetic fields broadens and then narrows in CaII H-line filtergrams. This phenomenon is consistent with the emergence of the helical flux rope as photospheric counterparts. The size of the flux rope is roughly 30,000 km long and 10,000 km wide. The width is larger than that of the prominence. (2) No shear motion or converging flows are detected, but we find diverging flows such as mesogranules along the polarity inversion line. The presence of mesogranules may be related to the emergence of the helical flux rope. (3) The emerging helical flux rope reconnects with magnetic fields of the pre-existing prominence to stabilize the prominence for the next several days. We thus conjecture that prominence coronal magnetic fields emerge in the form of helical flux ropes that contribute to the formation and maintenance of the prominence.

Original languageEnglish
Pages (from-to)913-922
Number of pages10
JournalAstrophysical Journal
Volume697
Issue number1
DOIs
StatePublished - 2009
Externally publishedYes

Keywords

  • Sun: filaments
  • Sun: prominences

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