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.
Author supplied keywords
Cite
CITATION STYLE
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
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.