Helical distributed chaos is reported in solar wind magnetic field spectra from DNS, plasma lab experiment, and Helios-1/Ulysses measurements dominated by magnetic and cross helicity.
Solar wind turbulent spectrum from MHD to electron scales
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abstract
Turbulent spectra of magnetic fluctuations in the free solar wind are studied from MHD to electron scales using Cluster observations. We discuss the problem of the instrumental noise and its influence on the measurements at the electron scales. We confirm the presence of a curvature of the spectrum $\sim \exp{\sqrt{k\rho_e}}$ over the broad frequency range $\sim[10,100]$ Hz, indicating the presence of a dissipation. Analysis of seven spectra under different plasma conditions show clearly the presence of a quasi-universal power-law spectrum at MHD and ion scales. However, the transition from the inertial range $\sim k^{-1.7}$ to the spectrum at ion scales $\sim k^{-2.7}$ is not universal. Finally, we discuss the role of different kinetic plasma scales on the spectral shape, considering normalized dimensionless spectra.
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physics.space-ph 1years
2019 1verdicts
UNVERDICTED 1representative citing papers
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Helical distributed chaos in magnetic field of solar wind
Helical distributed chaos is reported in solar wind magnetic field spectra from DNS, plasma lab experiment, and Helios-1/Ulysses measurements dominated by magnetic and cross helicity.