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Prompt Simultaneous Acceleration of Protons and Electrons to Relativistic Energies by Shock Waves in Solar Flares

机译:太阳耀斑中冲击波促使质子和电子同时加速到相对论能量

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摘要

It is shown by theory and fully relativistic, electromagnetic particle simulation that a collisionless fast magnetosonic shock wave can promptly accelerate protons and electrons to relativistic energies; proton energies approximate or greater than 10 to the 9th eV and electron energies approximate to or greater than a million eV. The strong nonstochastic acceleration occurs in a rather strong magnetic field such that omega sub ce is approximate to or greater than omega sub pe, where omega sub ce is the electron cyclotron frequency, and omega sub pe is the electron plasma frequency. The time needed for the proton acceleration is of the order of the ion cyclotron period and is quite short (much less than 1 s for solar plasmas). The electron acceleration time is shorter than the ion cyclotron period. The present shock acceleration mechanism can explain important features of observed particle acceleration in the impulsive phase of solar flares: simultaneous and prompt acceleration of protons and electrons to relativistic energies.

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