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Simulation for electron acceleration by DC electric field in the presence of ion sound waves and associated hard X-ray emission
Authors:T Takakura
Institution:(1) Department of Astronomy, University of Tokyo, Tokyo, Japan
Abstract:Time-dependent Fokker-Planck equation was numerically solved to demonstrate the dynamics of electrons in a uniform coronal loop with an applied axial DC electric field in the presence of ion-sound waves. This electric field is attributed to an anomalous resistivity due to the ion-sound turbulence caused by an initially given critical current density.The electron momentum distribution becomes a steady state in the whole turbulent region in a short time for which some electrons can be accelerated to the maximum electric potential K c. The steady energy distribution of electrons flowing out the end of the turbulent region has a very hard power-law-like spectrum with an index delta of about 0.75. The associated hard X-rays from a thick target also show a hard spectrum with a photon spectral index gamma of 1.3. In order for gamma to be much greater as observed in impulsive X-ray bursts, it is required that the source is a sum of many elementary loops with a power-law-like distribution in K c with an index agr = gammadelta + 2.5.
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