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Temperature anisotropy in the presence of ultra low frequency waves in the terrestrial foreshock

  • L. A. Selzer
  • , B. Hnat
  • , K. T. Osman
  • , V. M. Nakariakov
  • , J. P. Eastwood
  • , D. Burgess

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

We report the first study of the correlation between elevated solar wind core plasma temperatures and temperature anisotropy in the terrestrial foreshock. Plasma temperature is enhanced near the fire hose marginal stability threshold in the presence of ultra low frequency (ULF) large amplitude magnetic perturbations, which are intrinsically right-hand circularly polarized. Direct comparison of contemporaneous anisotropic temperatures in the upstream solar wind and the foreshock suggests that the net heating of plasma is mediated via increase of the parallel temperature in the foreshock region where the ULF waves are present. We consider the possibility that a mechanism based on Landau damping, where solar wind plasma temperature parallel to the background magnetic field is increased by interaction with oblique compressible fast magneto-acoustic ULF waves, influences temperature anisotropy.

Original languageEnglish
Article numberL5
JournalAstrophysical Journal Letters
Volume788
Issue number1
DOIs
Publication statusPublished - 10 Jun 2014

Keywords

  • Sun: oscillations
  • plasmas
  • polarization
  • solar wind
  • solar-terrestrial relations
  • waves

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