The uncertainty of local background magnetic field orientation in anisotropic plasma turbulence
arXiv:1706.01126 · doi:10.3847/1538-4357/aa767c
Abstract
In order to resolve and characterize anisotropy in turbulent plasma flows a proper estimation of the background magnetic field is crucially important. Various approaches to calculate the background magnetic fields, ranging from local fields to globally averaged fields, are commonly used in the analysis of turbulent data. Here we investigate how the uncertainty in the orientation of a scale dependent background magnetic field influences the ability to resolve anisotropy. Therefore we introduce a quantitative measure, the angle uncertainty, which characterizes the uncertainty of the orientation of the background magnetic field which turbulent structures are exposed to. The angle uncertainty can be used as a condition to estimate the ability to resolve anisotropy with certain accuracy. We apply our description to resolve spectral anisotropy in fast solar wind data. We show that if the angle uncertainty grows too large, the power of the turbulent fluctuations is attributed to false local magnetic field angles, which may lead to an incorrect estimation of spectral indices. In our results an apparent robustness of the spectral anisotropy to false local magnetic field angles is observed, which can be explained by a stronger increase of power for lower frequencies when the scale of the local magnetic field is increased. The frequency dependent angle uncertainty is a measure which can be applied to any turbulent system.
Accepted in ApJ
References in corpus (6)
- Anisotropic scaling of magnetohydrodynamic turbulence
- Wave turbulence in incompressible Hall MHD
- Strong Imbalanced Turbulence
- Simulations of Electron Magnetohydrodynamic Turbulence
- Structure of Stationary Strong Imbalanced Turbulence
- Forward Modeling of Reduced Power Spectra From Three-Dimensional k-Space
Cited by in corpus (5)
- Critical Balance and the Physics of MHD Turbulence
- Three-dimensional magnetic reconnection in particle-in-cell simulations of anisotropic plasma turbulence
- On the evolution of the Anisotropic Scaling of Magnetohydrodynamic Turbulence in the Inner Heliosphere
- Three-dimensional local anisotropy of velocity fluctuations in the solar wind
- A Detailed Examination of Anisotropy and Timescales in Three-dimensional Incompressible Magnetohydrodynamic Turbulence