Kinetics of energetic electrons in magnetic traps in solar active regions

Astronomy and Astrophysics – Astronomy

Scientific paper

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High Energy Electrons, Kinetic Equations, Magnetically Trapped Particles, Particle Motion, Plasma-Particle Interactions, Solar Wind, Thermal Plasmas, Angular Distribution, Beam Injection, Electron Beams, Electron Distribution, Magnetic Field Configurations, Solar Activity Effects, Solar Magnetic Field, Solar Radio Bursts, Spatial Distribution

Scientific paper

The formation of angular and spatial distributions of energetic electrons (10-100 keV) in a magnetic trap in a solar active region is studied by solving the kinetic equation in the drift approximation, with allowance for collisions with thermal plasma. Analytic relationships for continuous injection (a static solution) and a numerical solution for pulsed injection are obtained. Attention is given to the influence of the nonuniformity of the magnetic field of the trap and of collisions on the isotropization of the beam. An attempt is made to use the results obtained here to explain the evolution of the frequency spectra of microwave bursts and the frequency-time structure of meter-wave burst emission.

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