Temperature effects on whistler modes near gyroresonance

Physics

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Cyclotron Resonance, Earth Magnetosphere, Gyrofrequency, Thermal Plasmas, Whistlers, Ion Cyclotron Radiation, Magnetoionics, Propagation Modes, Temperature Effects

Scientific paper

The study of wave propagation taking place in the magnetosphere in a direction parallel to the magnetic field in either the electron or the ion cyclotron mode requires a more detailed description of the equilibrium thermal plasma properties, when the frequencies approach the local electron or ion cyclotron frequency. The phenomenon of collisionless damping arises as the frequency approaches gyroresonance. This temperature dependent phenomenon can be described as a consequence of the imaginary portion of the refractive index. It is shown that the real part of the refractive index is also substantially changed by the introduction of a finite temperature near gyroresonance.

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