paper

Understanding the level of Turbulence by Asymmetric Distributions: a motivation for measurements in Space Plasmas

arXiv:2306.15759 · doi:10.3847/1538-4357/acd6f0

Abstract

In this article, on the basis of the Langevin equation applied to velocity fluctuations, we numerically model the Partial Variance of Increments, which is a useful tool to measure time and spatial correlations in space plasmas. We consider a Coupled Map Lattice model to relate the spatial scale of fluctuations, , to some macro parameters of the systems, as the Reynolds number, , the parameter of Kappa distributions, and a skewness parameter, . To do so, we compute the Velocity Probability Density Function (PDF) for each spatial scale and different values of Reynolds number in the simulations. We fit the PDF with a Skew-Kappa distribution, and we obtain a numerical relationship between the level of turbulence of the plasma and the skewness of obtained distributions; namely . We expect the results exposed in this paper to be useful as a tool to characterize the turbulence in the context of space plasma and other environments.

18 pages, 3 figures. Accepted for publication in The Astrophysical Journal

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