Mirror height lowering of trapped electrons by an inductive electric field

Physics

Scientific paper

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Electric Fields, Magnetospheric Electron Density, Mirror Point, Ring Currents, Trapped Particles, Auroral Zones, Electron Precipitation, Electron Scattering, Magnetic Induction, Runge-Kutta Method

Scientific paper

An investigation is conducted of the effect of an electric field on the motion of electrons which are trapped in the magnetosphere and execute several bounces between mirror points while under the influence of the electric field. The results of the investigation demonstrate the possible importance of the azimuthal inductive electric field of the symmetric ring current in lowering the mirror heights of electrons trapped in the magnetosphere.

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