Energy dissipation processes in solar wind turbulence

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Abstract

Turbulence is a chaotic flow regime filled by irregular flows. The dissipation of turbulence is a fundamental problem in the realm of physics. Theoretically, dissipation ultimately cannot be achieved without collisions, and so how turbulent kinetic energy is dissipated in the nearly collisionless solar wind is a challenging problem. Wave particle interactions and magnetic reconnection (MR) are two possible dissipation mechanisms, but which mechanism dominates is still a controversial topic. Here we analyze the dissipation region scaling around a solar wind MR region. We find that the MR region shows unique multifractal scaling in the dissipation range, while the ambient solar wind turbulence reveals a monofractal dissipation process for most of the time. These results provide the first observational evidences for intermittent multifractal dissipation region scaling around a MR site, and they also have significant implications for the fundamental energy dissipation process.

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Wang, Y., Wei, F. S., Feng, X. S., Xu, X. J., Zhang, J., Sun, T. R., & Zuo, P. B. (2015). Energy dissipation processes in solar wind turbulence. Astrophysical Journal, Supplement Series, 221(2). https://doi.org/10.1088/0067-0049/221/2/34

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