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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Study of reconnection-associated multiscale fluctuations with Cluster and Double Star
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Study of reconnection-associated multiscale fluctuations with Cluster and Double Star

机译:reconnection-associated多尺度的研究波动集群和双星

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The objective of the paper is to asses the specific spectral scaling properties of magnetic reconnection associated fluctuations/turbulence at the earthward and tailward outflow regions observed simultaneously by the Cluster and Double Star (TC-2) spacecraft on 26 September 2005. Systematic comparisons of spectral characteristics, including variance anisotropy and scale-dependent spectral anisotropy features in wave vector space were possible due to the well-documented reconnection events, occurring between the positions of Cluster (X = ?14–16 R e ) and TC-2 (X = ?6.6 R e ). Another factor of key importance is that the magnetometers on the spacecraft are similar. The comparisons provide further evidence for asymmetry of physical processes in earthward/tailward reconnection outflow regions. Variance anisotropy and spectral anisotropy angles estimated from the multiscale magnetic fluctuations in the tailward outflow region show features which are characteristic for magnetohydrodynamic cascading turbulence in the presence of a local mean magnetic field. The multiscale magnetic fluctuations in the earthward outflow region are not only exhibiting more power, lack of variance, and scale-dependent anisotropies but also are having larger anisotropy angles. In this region the magnetic field is more dipolar and the main processes driving turbulence are flow breaking/mixing, perhaps combined with turbulence ageing and noncascade-related multiscale energy sources.
机译:本文的目的是驴特定的磁谱扩展属性重新连接/湍流波动有关向地球和tailward流出地区同时观察到的集群和双星(TC-2)宇宙飞船于2005年9月26日。系统的光谱比较特征,包括方差各向异性和尺度谱各向异性特性是可能由于在波矢空间证据确凿的重新连接事件发生集群之间的位置(X = ? 14 - 16 R e)和TC-2 (X = ? 6.6 R e)。是,磁力计的重要性宇宙飞船是相似的。进一步的证据不对称的身体流程在向地面/ tailward重新连接流出地区。从多尺度各向异性角度估计磁场波动tailward流出区域显示特性的特征磁流体动力层叠的动荡一个地方平均磁场的存在。多尺度向地球的磁场波动流出地区不仅是展示更多权力、缺乏方差和尺度各向异性也有大各向异性的角度。场更偶极和主要流程驾驶湍流流动打破/混合,也许加上老龄化和动荡noncascade-related多尺度能源。

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