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Strong Anisotropic MHD Turbulence with Cross Helicity

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arxiv 0801.4903 v1 pith:BK2VYNCO submitted 2008-01-31 astro-ph

classification astro-ph
keywords crossenergyhelicityincreasespoweranisotropiccascadefield
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This paper proposes a new phenomenology for strong incompressible MHD turbulence with nonzero cross helicity. This phenomenology is then developed into a quantitative Fokker-Planck model that describes the time evolution of the anisotropic power spectra of the fluctuations propagating parallel and anti-parallel to the background magnetic field. It is found that in steady state the power spectra of the magnetic field and total energy are steeper than a Kolmogorov spectrum and become increasingly steep as C/E increases, where C is the cross helicity and E is the fluctuation energy. Increasing C with fixed E increases the time required for energy to cascade to smaller scales, reduces the cascade power, and increases the anisotropy of the small-scale fluctuations. The implications of these results for the solar wind and solar corona are discussed in some detail.

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  1. Intermittent, Reflection-Driven, Strong Imbalanced MHD Turbulence

    physics.plasm-ph 2025-02 conditional novelty 6.0 of 10

    A new phenomenological model predicts structure-function, spectrum, and parallel-length scalings for intermittent, reflection-driven imbalanced MHD turbulence, matching Parker Solar Probe data.

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