首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Effects of Fluctuating Magnetic Field on the Growth of the Kelvin-Helmholtz Instability at the Earth's Magnetopause
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Effects of Fluctuating Magnetic Field on the Growth of the Kelvin-Helmholtz Instability at the Earth's Magnetopause

机译:脉动磁场的影响Kelvin-Helmholtz不稳定的增长地球的磁层

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摘要

At the Earth's magnetopause, the Kelvin-Helmholtz (KH) instability, driven by the persistent velocity shear between the magnetosheath and the magnetosphere, has been frequently observed during northward interplanetary magnetic field periods and considered as one of the most important candidates for transporting and mixing plasmas across the magnetopause. However, how this process interacts with magnetic field fluctuations, which persistently exist near the magnetopause, has been less discussed. Here we perform a series of 2-D fully kinetic simulations of the KH instability at the magnetopause considering a power law spectrum of initial fluctuations in the magnetic field. The simulations demonstrate that when the amplitude level of the initial fluctuations is sufficiently large, the KH instability evolves faster, leading to a more efficient plasma mixing within the vortex layer. In addition, when the spectral index of the initial fluctuations is sufficiently small, the modes whose wavelength is longer than the theoretical fastest growing mode grow dominantly. The fluctuating magnetic field also results in the formation of the well-matured turbulent spectrum with a -5/3 index within the vortex layer even in the early nonlinear growth phase of the KH instability. The obtained spectral features in the simulations are in reasonable agreement with the features in KH waves events at the magnetopause observed by the Magnetospheric Multiscale mission and conjunctively by the Geotail and Cluster spacecraft. These results indicate that the magnetic field fluctuations may really contribute to enhancing the wave activities especially for longer wavelength modes and the associated mixing at the magnetopause.
机译:地球的磁层,Kelvin-Helmholtz(KH)不稳定,由于持久的磁鞘和之间的剪切速度磁气圈,经常观察到在北行星际磁场期和视为一种最运输和混合的重要候选人等离子体在磁层。这个过程与磁场相互作用附近波动,持续存在磁层,不讨论。执行一系列二维完全动力学模拟KH不稳定的磁层考虑到初始的幂律谱波动的磁场。仿真表明,当振幅最初的波动是足够的水平大,KH不稳定的发展速度,导致更高效的等离子体中的混合涡层。最初的波动指数是足够的小、波长长于的模式理论发展最快的成长方式居多。导致成熟的形成湍流频谱内5/3指数涡层即使在早期的非线性增长阶段的KH不稳定。光谱特性的模拟合理的协议与KH的特性在磁层观察到的事件磁性层的多尺度使命和结合地Geotail和集群宇宙飞船。磁场波动可能真的贡献特别是对于提高波活动长波长模式和相关的混合在磁层。

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