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Poster De Conférence Année : 2017

Multispacecraft Observations and 3D Structure of Electromagnetic Electron Phase-Space Holes

J. Holmes
  • Fonction : Auteur
N. Ahmadi
R. Ergun
F. D. Wilder
  • Fonction : Auteur
D. L. Newman
  • Fonction : Auteur
Olivier Le Contel
R. B. Torbert
  • Fonction : Auteur
J. L. Burch
  • Fonction : Auteur

Résumé

Electron phase-space holes are nonlinear plasma structures characterized by a unipolar trapping potential with a radial electric field. They commonly form from beam instabilities and other turbulent processes in many plasma environments. Due to their strong fields and long lifetimes, it has been hypothesized that phase-space holes can carry energy over long distances, contribute to large-scale currents, and accelerate individual particles to high energies. With electromagnetic field measurements at high cadence and precision on more than two spacecraft, we can compare the real 3D structure of electron phase-space holes to the models suggested by Andersson et al. (2009) and Treumann and Baumjohann (2012). In this case study, we consider a train of correlated electron phase-space holes observed by all four MMS spacecraft on the dusk flank within the magnetosphere. A number of the holes appear to pass directly through the 7 km tetrahedron formation. We use this data to compute the holes' phase velocity vector relative to the background magnetic field, and quantify their internal currents and associated magnetic moments. For these weak magnetic signatures, we find that the contribution from internal E×B0 currents is comparable to the v×E effect. This study will be interesting to compare with MMS observations in the magnetotail, which are expected to capture large, semi-relativistic phase-space holes with a strong magnetic component.
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Dates et versions

hal-02861279 , version 1 (08-06-2020)

Identifiants

  • HAL Id : hal-02861279 , version 1

Citer

J. Holmes, N. Ahmadi, R. Ergun, F. D. Wilder, D. L. Newman, et al.. Multispacecraft Observations and 3D Structure of Electromagnetic Electron Phase-Space Holes. AGU Fall meeting, Dec 2017, New Orleans, Louisiane, United States. 13, 2017. ⟨hal-02861279⟩
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