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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electron firehose instability: Kinetic linear theory and two-dimensional particle-in-cell simulations
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Electron firehose instability: Kinetic linear theory and two-dimensional particle-in-cell simulations

机译:电子水管的不稳定性:动力学线性理论和二维单元格内粒子模拟

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摘要

The kinetic electron firehose instability (EFI) is thought to be a crucial mechanism for constraining the observed electron anisotropy in expanding astrophysical plasmas, such as the solar wind. The EFI arises in a bi-Maxwellian plasma when the parallel temperature is greater than the perpendicular one, and its effect is to reduce anisotropy. We study this mechanism via kinetic linear theory, extending and refining previous results, and by new two-dimensional particle-in-cell (PIC) simulations with physical mass ratio. The results of PIC simulations show under which conditions the EFI can indeed be regarded as a constraint for electron distribution function. The detailed electron physics near marginal stability condition is discussed, with emphasis on the competition between growing and damping modes and on wave patterns formed at the nonlinear stage. The results also suggest an observational signature that the EFI has operated, namely the appearance of low-frequency, quasiperpendicular whistler/electron–cyclotron waves.
机译:动态电子流管不稳定性(EFI)被认为是在扩大天体等离子体(例如太阳风)时约束观察到的电子各向异性的关键机制。当平行温度大于垂直温度时,EFI出现在双麦克斯韦等离子体中,其作用是减小各向异性。我们通过动力学线性理论,扩展和完善以前的结果,以及通过新的具有物理质量比的二维单元格内粒子(PIC)模拟,研究了这种机理。 PIC仿真的结果表明,在何种条件下,EFI确实可以视为电子分布函数的约束。讨论了接近极限稳定条件的详细电子物理学,重点是增长和阻尼模态之间的竞争以及在非线性阶段形成的波型。结果还表明,EFI的运行具有观测意义,即出现了低频准四方哨声/电子回旋波。

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