Theory of electromagnetic cyclotron wave growth in a time-varying magnetoplasma

Physics

Scientific paper

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Approximation, Cyclotron Radiation, Electromagnetic Wave Transmission, Earth Magnetosphere, Wave Propagation

Scientific paper

The effect of a time-dependent perturbation in the magnetoplasma on the wave and particle populations is investigated using the Kennel-Petchek (1966) approach. Perturbations in the cold plasma density, energetic particle distribution, and resonance condition are calculated on the basis of the ideal MHD assumption given an arbitrary compressional magnetic field perturbation. An equation is derived describing the time-dependent growth rate for parallel propagating electromagnetic cyclotron waves in a time-varying magnetoplasma with perturbations superimposed on an equilibrium configuration.

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