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AGU: Journal of Geophysical Research, Space Physics

 
Abstract
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Abstract

Electric fields with a large parallel component observed by the Freja spacecraft: Artifacts or real signals ?

Thomas Chust

Centre d'étude des Environnements Terrestre et Planétaires, Centre National de la Recherche, Scientifique et Université de Versailles-Saint-Quentin, Vélizy, France

Philippe Louarn

Centre d'étude des Environnements Terrestre et Planétaires, Centre National de la Recherche, Scientifique et Université de Versailles-Saint-Quentin, Vélizy, France

Martin Volwerk

Centre d'étude des Environnements Terrestre et Planétaires, Centre National de la Recherche, Scientifique et Université de Versailles-Saint-Quentin, Vélizy, France

Hervé de Feraudy

Centre d'étude des Environnements Terrestre et Planétaires, Centre National de la Recherche, Scientifique et Université de Versailles-Saint-Quentin, Vélizy, France

Alain Roux

Centre d'étude des Environnements Terrestre et Planétaires, Centre National de la Recherche, Scientifique et Université de Versailles-Saint-Quentin, Vélizy, France

Jan-Erik Wahlund

Swedish Institute for Space Physics, Uppsala, Sweden

Bengt Holback

Swedish Institute for Space Physics, Uppsala, Sweden

Using plasma wave data sampled by the Freja spacecraft from the topside ionosphere during auroral conditions, the possible existence of electric fields with an intense parallel component (a few tens of millivolts per meter) with respect to the Earth's magnetic field is discussed. When Freja crosses large-amplitude solitary electromagnetic structures (ΔE ≈ 100 mV/m and ΔB ≈ 10 nT, identified as being solitary kinetic Alfvén waves), strong electric spikes are sometimes detected along a direction almost parallel to the static magnetic field. The possible sources of errors due to the plasma inhomogeneities and/or to the magnetic connection between the electric probe and the spacecraft body are reviewed and discussed. In particular, using an indirect technique based on the reconstruction of the electric field hodograms, it is shown that these sources of errors have no influence on our conclusions. Unless unknown mechanisms strongly affect the validity of double-probe measurements in some circumstances, it is then concluded that an electric field with a parallel component 2–3 orders of magnitude larger than expected from the theory of kinetic Alfvén waves can develop in the topside ionosphere.

Received 8 January 1996; accepted 5 September 1997; .

Citation: Chust, T., P. Louarn, M. Volwerk, H. de Feraudy, A. Roux, J.-E. Wahlund, and B. Holback (1998), Electric fields with a large parallel component observed by the Freja spacecraft: Artifacts or real signals ?, J. Geophys. Res., 103(A1), 215–224.

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