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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Local Acceleration of Protons to 100 keV in a Quasi- Parallel Bow Shock
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Local Acceleration of Protons to 100 keV in a Quasi- Parallel Bow Shock

机译:当地100 keV质子的加速准平行弓形激波

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摘要

Recent observations in the quasi-parallel bow shock by the Magnetospheric Multiscale spacecraft show rapid heating and acceleration of ions up to an energy of about 100 keV. It is demonstrated that a prominent acceleration mechanism is the nonlinear interaction with a spectrum of waves produced by gradient-driven instabilities, including the lower hybrid drift (LHD) instability, modified two-stream (MTS) instability, and electron cyclotron drift (ECD) instability. Test-particle simulations show that the observed spectrum of waves can rapidly accelerate protons up to a few hundreds of keV by the ExB mechanism. The ExB wave mechanism is related to the surfatron mechanism at shocks, but through the coupling with the stochastic heating condition, it produces significant acceleration on much shorter temporal and spatial scales by the interaction with bursts of waves within a cyclotron period. The results of this study are built on the heritage of four-point measurement techniques developed for the Cluster mission and imply that the concepts of Fermi acceleration, diffusive shock acceleration, and shock drift acceleration are not needed to explain proton acceleration to hundreds of keV at the Earth's bow shock.
机译:最近的观察quasi-parallel弓震惊的磁性层的多尺度飞船显示快速加热和加速的离子一个大约100 keV能量。突出的加速机制非线性相互作用的光谱波由gradient-driven不稳定,包括较低的混合漂移(方面)不稳定,修改二束(MTS)不稳定,电子回旋漂移(ECD)不稳定。观察到的波的频谱可以迅速加速质子keV的几百ExB机制。surfatron相关机制的冲击,但是通过耦合随机加热条件下,它产生明显的加速在更短的时间和空间尺度上的中爆炸波的相互作用回旋加速器的时期。建立在传统的四点测量针对集群任务和开发的技术暗示的概念费米加速,漂移扩散冲击加速度和冲击质子加速不需要解释成百上千的凯文在地球的加速度弓形激波。

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