首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Generation of Turbulence in Kelvin-Helmholtz Vortices at the Earth's Magnetopause: Magnetospheric Multiscale Observations
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Generation of Turbulence in Kelvin-Helmholtz Vortices at the Earth's Magnetopause: Magnetospheric Multiscale Observations

机译:代Kelvin-Helmholtz动荡漩涡在地球的磁层:磁性层的多尺度观测

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摘要

The Kelvin-Helmholtz instability (KHI) at Earth's magnetopause and associated turbulence are suggested to play a role in the transport of mass and momentum from the solar wind into Earth's magnetosphere. We investigate electromagnetic turbulence observed in Kelvin-Helmholtz vortices encountered at the dusk flank magnetopause by the Magnetospheric Multiscale (MMS) spacecraft under northward interplanetary magnetic field (IMF) conditions in order to reveal its generation process, mode properties, and role. A comparison with another MMS event at the dayside magnetopause with reconnection but no KHI signatures under a similar IMF condition indicates that while high-latitude magnetopause reconnection excites a modest level of turbulence in the dayside low-latitude boundary layer, the KHI further amplifies the turbulence, leading to magnetic energy spectra with a power law index -5/3 at magnetohydrodynamic scales even in its early nonlinear phase. The mode of the electromagnetic turbulence is analyzed with a single-spacecraft method based on Ampère's law, developed by Bellan (2016, https://doi. org/10.1002/2016JA022827), for estimating wave vectors as a function of spacecraft frame frequency. The results suggest that the turbulence does not consist of propagating normal-mode waves but is due to interlaced magnetic flux tubes advected by plasma flows in the vortices. The turbulence at sub-ion scales in the early nonlinear phase of the KHI may not be the cause of the plasma transport across the magnetopause but rather a consequence of three-dimensional vortex-induced reconnection, the process that can cause an efficient transport by producing tangled reconnected field lines.
机译:在地球的Kelvin-Helmholtz不稳定(地块)磁层和相关的湍流建议在运输中发挥作用的质量并从太阳风进入地球的势头磁气圈。动荡中观察到Kelvin-Helmholtz漩涡遇到的黄昏侧磁层磁性层的多尺度(MMS)航天器向北行星际磁场(IMF)以揭示其生成条件过程、模式的属性和作用。与另一个MMS的光面的事件磁重联,但没有地块在类似的国际货币基金组织(IMF)条件下签名表明在高纬度地区磁层重新连接激发适度水平的动荡在的光面低纬度边界层,川崎重工进一步放大了动荡,导致磁性能量谱幂律指数即使在其5/3在磁流体动力尺度非线性阶段的早期。电磁涡流分析用基于安培定律,single-spacecraft方法由贝兰(2016年,https://doi。org/10.1002/2016JA022827),估计波向量作为航天器的函数框架频率。动荡不包括传播正常模式波,但由于交错通过等离子体流磁通管流水漩涡。早期的非线性阶段的川崎重工可能不是对面的等离子体传输的原因磁层而的结果三维涡激重新连接,的过程可能会导致一个有效的运输通过产生错综复杂的连接电场线。

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