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Nonaxisymmetric Anisotropy of Solar Wind Turbulence as a Direct Test for Models of Magnetohydrodynamic Turbulence

机译:太阳风湍流的非轴对称各向异性作为磁流体动力湍流模型的直接检验

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摘要

Single point spacecraft observations of the turbulent solar wind flow exhibit a characteristic nonaxisymmetric anisotropy that depends sensitively on the perpendicular power spectral exponent. We use this nonaxisymmetric anisotropy as a function of wave vector direction to test models of MHD turbulence. Using Ulysses magnetic field observations in the fast, quiet polar solar wind we find that the Goldreich-Sridhar model of MHD turbulence is not consistent with the observed anisotropy, whereas the observations are well reproduced by the "slab + 2D" model. The Goldreich-Sridhar model alone cannot account for the observations unless an additional component is also present.
机译:单点航天器对湍流太阳风流的观测显示出特征性的非轴对称各向异性,该各向异性敏感地取决于垂直功率谱指数。我们使用这种非轴对称各向异性作为波矢量方向的函数来测试MHD湍流模型。在快速,安静的极地太阳风中使用Ulysses磁场观测,我们发现MHD湍流的Goldreich-Sridhar模型与观测到的各向异性不一致,而“平板+ 2D”模型很好地再现了观测结果。除非还存在其他组成部分,否则仅Goldreich-Sridhar模型无法解释观察结果。

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