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Propagating waves in polar coronal holes as seen by SUMER & EIS

  • D. Banerjee
  • , L. Teriaca
  • , G. R. Gupta
  • , S. Imada
  • , G. Stenborg
  • , S. K. Solanki

Research output: Contribution to journalArticlepeer-review

58 Citations (Scopus)

Abstract

Context. To study the dynamics of coronal holes and the role of waves in the acceleration of the solar wind, spectral observations were performed over polar coronal hole regions with the SUMER spectrometer on SoHO and the EIS spectrometer on Hinode. Aims. Using these observations, we aim to detect the presence of propagating waves in the corona and to study their properties. Methods. The observations analysed here consist of SUMER spectra of the Ne VIII 770 Å (T = 0.6 MK) and EIS slot images in the Fe XII 1.95 Å (T = 1.3 MK). Using the wavelet technique, we study line radiance oscillations at different heights from the limb in the polar coronal hole regions. Results. We detect the presence of long period oscillations with periods of .10 to 30 min in polar coronal holes. The oscillations have an amplitude of a few percent in radiance and are not detectable in line-of-sight velocity. From the time distance maps we find evidence for propagating velocities from 75 km s -1 (Ne VIII) to 125 km s-1 (Fe XII). These velocities are subsonic and roughly in the same ratio as the respective sound speeds. Conclusions. We interpret the observed propagating oscillations in terms of slow magneto-acoustic waves. These waves can be important for the acceleration of the fast solar wind.

Original languageEnglish
Pages (from-to)L29-L32
JournalAstronomy and Astrophysics
Volume499
Issue number3
DOIs
Publication statusPublished - Jun 2009

Keywords

  • Sun: Corona -
  • Sun: Oscillations -
  • Sun: Transition region -
  • Sun: Uv radiation -
  • Waves 1

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