首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Dispersive Fast MagnetosonicWaves and Shock-Driven Compressible Turbulence in the Inner Heliosheath
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Dispersive Fast MagnetosonicWaves and Shock-Driven Compressible Turbulence in the Inner Heliosheath

机译:如果MagnetosonicWaves和中断导致油价新一轮分散快可压缩湍流内日鞘

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The solar wind in the inner heliosheath beyond the termination shock (TS) is a nonequilibrium collisionless plasma consisting of thermal solar wind ions, suprathermal pickup ions, and electrons. In such multi-ion plasma, two fast magnetosonic wave modes exist, the low-frequency fast mode and the high-frequency fast mode. Both fast modes are dispersive on fluid and ion scales, which results in nonlinear dispersive shock waves.We present high-resolution three-fluid simulations of the TS and the inner heliosheath up to a few astronomical units (AU) downstream of the TS.We show that downstream propagating nonlinear fast magnetosonic waves grow until they steepen into shocklets, overturn, and start to propagate backward in the frame of the downstream propagating wave. The counterpropagating nonlinear waves result in 2-D fast magnetosonic turbulence, which is driven by the ion-ion hybrid resonance instability. Energy is transferred from small scales to large scales in the inverse cascade range, and enstrophy is transferred from large scales to small scales in the direct cascade range.We validate our three-fluid simulations with in situ high-resolution Voyager 2 magnetic field observations in the inner heliosheath. Our simulations reproduce the observed magnetic turbulence spectrum with a spectral slope of -5/3 in frequency domain. However, the fluid-scale turbulence spectrum is not a Kolmogorov spectrum in wave number domain because Taylor's hypothesis breaks down in the inner heliosheath. The magnetic structure functions of the simulated and observed turbulence follow the Kolmogorov-Kraichnan scaling, which implies self-similarity.
机译:太阳风的日鞘之外激波边界(TS)是一个非平衡无碰撞的等离子体组成的热太阳能离子风离子,suprathermal皮卡电子。低频磁声波模式存在快速模式和高频快速模式。快速模式是分散在液体和离子尺度,导致非线性色散冲击波。three-fluid模拟TS和内心日鞘多达几天文单位(AU)下游的TS.We表明下游快速传播的非线性magnetosonic波成长,直到他们变陡峭shocklets,推翻,并开始向后传播的框架下游扩散波。counterpropagating非线性波在二维结果快magnetosonic动荡,这是由离子间的混合共振不稳定。从小尺度上转移到大尺度逆喀斯喀特山脉,涡度拟能从大尺度到小尺度直接的喀斯喀特山脉。与原位three-fluid模拟高分辨率的旅行者2号磁场观察内日鞘。模拟再现观察磁湍流频谱的谱斜率5/3在频域。湍流频谱不是柯尔莫哥洛夫频谱在波数域,因为泰勒的假设分解的日鞘。磁结构的模拟和功能观察到湍流遵循Kolmogorov-Kraichnan缩放,这意味着自相似性。

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