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Magnetosperic Multiscale (MMS) observation of plasma velocity-space cascade: Hermite representation and theory

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arxiv 1707.08180 v1 pith:YZWW6U63 submitted 2017-07-25 physics.plasm-ph astro-ph.SR

classification physics.plasm-phastro-ph.SR
keywords plasmaspacevelocitycascadedistributionhermiteinvestigatedmultiscale
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Plasma turbulence is investigated using high-resolution ion velocity distributions measured by the Magnetospheric Multiscale Mission (MMS) in the Earth's magnetosheath. The particle distribution is highly structured, suggesting a cascade-like process in velocity space. This complex velocity space structure is investigated using a three-dimensional Hermite transform that reveals a power law distribution of moments. In analogy to hydrodynamics, a Kolmogorov approach leads directly to a range of predictions for this phase-space cascade. The scaling theory is in agreement with observations, suggesting a new path for the study of plasma turbulence in weakly collisional space and astrophysical plasmas.

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  1. Energetic particle-mediated interplanetary shocks observed by Solar Orbiter

    physics.space-ph 2026-07 unverdicted novelty 5.0 of 10

    Four Solar Orbiter interplanetary shocks show energetic particle pressure dominating upstream, indicating particle-mediated modification of collisionless shocks.

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