Derivation of Electric Potential Patterns in the Inner Magnetosphere: Detailed Procedure

Physics

Scientific paper

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2712 Electric Fields (2411), 2730 Magnetosphere: Inner, 2736 Magnetosphere/Ionosphere Interactions (2431), 2784 Solar Wind/Magnetosphere Interactions

Scientific paper

The electric field in the inner magnetosphere is an important parameter that controls the variation of the ring current and the transport of plasmaspheric material. In this study we discuss detailed procedure to improve the electric potential patterns derived from data acquired by the electron drift instrument (EDI) and the electric field and wave (EFW) experiment on Cluster. The first step is an extension of the spatial range of the derived patterns. Cluster has a perigee of ~ 4 R_E, while ring current models usually have an inner boundary of L=2. It is worthwhile to extrapolate the electric potential patterns derived from Cluster data to 2

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