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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >THEMIS observation of intermittent turbulence behind the quasi-parallel and quasi-perpendicular shocks
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THEMIS observation of intermittent turbulence behind the quasi-parallel and quasi-perpendicular shocks

机译:忒弥斯的观察间歇性的动荡在quasi-parallel和quasi-perpendicular后面的冲击

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摘要

Turbulence is complex behavior that is ubiquitous in nature, but its mechanism is still not sufficiently clear. Therefore, the main aim of this paper is analysis of intermittent turbulence in magnetospheric and solar wind plasmas using a statistical approach based on experimental data acquired from space missions. The quintet spacecraft of Time History of Events and Macroscale Interactions during Substorms (THEMIS) allows us to investigate the details of turbulent plasma parameters behind the collisionless shocks. We investigate both the solar wind and magnetospheric data by using statistical probability distribution functions of Els?sser variables that can reveal the intermittent character of turbulence in space plasma. Our results suggest that turbulence behind the quasi-perpendicular shock is more intermittent with larger kurtosis than that behind the quasi-parallel shocks, which are immersed in a relatively quiet solar wind plasma, as confirmed by Wind measurements. It seems that behind the quasi-perpendicular shock the waves propagating outward from the Sun are larger than possibly damped waves propagating inward. In particular, we hope that this difference in characteristic behavior of the fluctuating space plasma parameters behind both types of shocks can help identify complex plasma structures in the future space missions. We also expect that the results obtained in this paper will be important for general models of turbulence.
机译:湍流是复杂的行为无处不在在自然界中,但其机制仍不足够清晰。本文分析间歇性的动荡在磁层和太阳风等离子体使用基于实验数据的统计方法从太空获得任务。宇宙飞船的时间事件和历史宏观尺度相互作用在亚暴(裁判)让我们调查湍流的细节等离子体参数在无碰撞的后面冲击。通过使用统计磁性层的数据概率分布函数的船吗?变量可以揭示了断断续续的湍流特性在空间等离子体。结果表明,湍流的背后quasi-perpendicular冲击间歇后面的峰度比quasi-parallel冲击,沉浸在相对安静的太阳风等离子体,证实被风测量。quasi-perpendicular冲击波浪传播从太阳向外比可能更大内阻尼波传播。我们希望这个差异的特点行为的波动空间等离子体参数后面两种类型的冲击可以帮助确定在未来复杂的等离子体结构太空任务。本文获得的将是重要的动荡的一般模型。

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