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Electron acceleration and parallel electric fields due to kinetic Alfvén waves in plasma with similar thermal and Alfvén speeds

机译:具有相似的热速度和Alfvén速度的等离子体中的动态Alfvén波引起的电子加速度和平行电场

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摘要

We investigate electron acceleration due to shear Alfven waves in a collissionless plasma for plasma parameters typical of 4–5RE radial distance from the Earth along auroral field lines. Recent observational work has motivated this study, which explores the plasma regime where the thermal velocity of the electrons is similar to the Alfven speed of the plasma, encouraging Landau resonance for electrons in the wave fields. We use a self-consistent kinetic simulation model to follow the evolution of the electrons as they interact with a short-duration wave pulse, which allows us to determine the parallel electric field of the shear Alfven wave due to both electron inertia and electron pressure effects. The simulation demonstrates that electrons can be accelerated to keV energies in a modest amplitude sub-second period wave. We compare the parallel electric field obtained from the simulation with those provided by fluid approximations.
机译:我们研究了无碰撞等离子体中Alfven剪切波引起的电子加速度,这些等离子体参数通常沿极光场线距离地球4-5RE径向距离。最近的观测工作推动了这项研究的开展,该研究探索了等离子体状态,其中电子的热速度类似于等离子体的Alfven速度,从而促进了波场中电子的Landau共振。当电子与短时波脉冲相互作用时,我们使用自洽动力学模型来跟踪电子的演化,这使我们能够确定由于电子惯性和电子压力效应而产生的剪切阿尔夫文波的平行电场。仿真表明,在中等幅度的亚秒周期波中,电子可以加速到keV能量。我们将模拟获得的平行电场与流体近似提供的电场进行比较。

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