Abstract
Using 5 years of spacecraft data from near Earth orbit, we investigate the correlation anisotropy of solar wind magnetohydrodynamic-scale fluctuations and show that the nature of the anisotropy differs in fast (1500 km s(-1)) and slow (400 km s(-1)) streams. In particular, fast streams are relatively more dominated by fluctuations with wavevectors quasi-parallel to the local magnetic field, while slow streams, which appear to be more fully evolved turbulence, are more dominated by quasi-perpendicular fluctuation wavevectors.
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CITATION STYLE
Dasso, S., Milano, L. J., Matthaeus, W. H., & Smith, C. W. (2005). Anisotropy in Fast and Slow Solar Wind Fluctuations. The Astrophysical Journal, 635(2), L181–L184. https://doi.org/10.1086/499559
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