Observations of large-amplitude electromagnetic waves and associated wave-particle interactions at the dipolarization front in the Earth's magnetotail: A case study

  • S. Y. Huang*
  • , Z. G. Yuan
  • , B. Ni
  • , M. Zhou
  • , H. S. Fu
  • , S. Fu
  • , X. H. Deng
  • , Y. Pang
  • , H. M. Li
  • , D. D. Wang
  • , H. M. Li
  • , X. D. Yu
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Broadband frequency waves around the dipolarization front (DF) are believed to play a crucial role in the particle dynamics. Using the Cluster observations, we report in this study large-amplitude electromagnetic waves with frequencies just above the ion cyclotron frequency at the DF in the near-Earth magnetotail region. The waves have very large amplitudes of magnetic and electric field fluctuations, up to ~2nT and ~10mV/m, respectively. The magnetic fluctuations are predominately along the ambient magnetic field (B0), while the electric fluctuations are primarily perpendicular to B0. The observed waves are highly oblique with a propagation angle of ~100° with respect to the ambient magnetic field, and are also linearly polarized. These features are consistent with the properties of the ion Bernstein wave mode in the high plasma β region, and also with the properties of current-driven ion cyclotron waves driven by the electromagnetic current-driven Alfven instability. We also discuss the possibility of wave-particle interactions at the DF.

Original languageEnglish
Pages (from-to)119-127
Number of pages9
JournalJournal of Atmospheric and Solar-Terrestrial Physics
Volume129
DOIs
StatePublished - 1 Jul 2015

Keywords

  • Dipolarization front
  • Electromagnetic wave
  • Magnetosphere
  • Wave-particle interaction

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