A Dynamical Model of Plasma Turbulence in the Solar Wind
arXiv:1502.04109 · doi:10.1098/rsta.2014.0145
Abstract
A dynamical approach, rather than the usual statistical approach, is taken to explore the physical mechanisms underlying the nonlinear transfer of energy, the damping of the turbulent fluctuations, and the development of coherent structures in kinetic plasma turbulence. It is argued that the linear and nonlinear dynamics of Alfven waves are responsible, at a very fundamental level, for some of the key qualitative features of plasma turbulence that distinguish it from hydrodynamic turbulence, including the anisotropic cascade of energy and the development of current sheets at small scales. The first dynamical model of kinetic turbulence in the weakly collisional solar wind plasma that combines self-consistently the physics of Alfven waves with the development of small-scale current sheets is presented and its physical implications are discussed. This model leads to a simplified perspective on the nature of turbulence in a weakly collisional plasma: the nonlinear interactions responsible for the turbulent cascade of energy and the formation of current sheets are essentially fluid in nature, while the collisionless damping of the turbulent fluctuations and the energy injection by kinetic instabilities are essentially kinetic in nature.
29 pages, 2 figures, 196 references, accepted for publication in Theme Issue on "Dissipation & Heating in Solar Wind Turbulence" in Philosophical Transactions of the Royal Society A
References in corpus (19)
- Anisotropic scaling of magnetohydrodynamic turbulence
- Kinetic Simulations of Magnetized Turbulence in Astrophysical Plasmas
- Small Scale Energy Cascade of the Solar Wind Turbulence
- Magnetic Reconnection and Intermittent Turbulence in the Solar Wind
- Solar wind turbulent spectrum at plasma kinetic scales
- Whistler mode waves and the electron heat flux in the solar wind: Cluster observations
- Spectral Slope Variation at Proton Scales from Fast to Slow Solar Wind
- Turbulent Reconnection and Its Implications
- Predicted Impacts of Proton Temperature Anisotropy on Solar Wind Turbulence
- The Role of Turbulence in Coronal Heating and Solar Wind Expansion
- Direct Evidence of the Transition from Weak to Strong MHD Turbulence
- Physical Interpretation of the Angle Dependent Magnetic Helicity Spectrum in the Solar Wind: The Nature of Turbulent Fluctuations near the Proton Gyroradius Scale
- Magnetic Discontinuities in Magnetohydrodynamic Turbulence and in the Solar Wind
- Inertial range turbulence in kinetic plasmas
- The Dynamical Generation of Current Sheets in Astrophysical Plasma Turbulence
- Cascade and Damping of Alfvén-Cyclotron Fluctuations: Application to Solar Wind Turbulence Spectrum
- Observation of flux tube crossings in the solar wind
- The Quasilinear Premise for the Modeling of Plasma Turbulence
- Intermittency in Weak Magnetohydrodynamic Turbulence
Cited by in corpus (39)
- The multi-scale nature of the solar wind
- Energy transfer, pressure tensor and heating of kinetic plasma
- Turbulent Reconnection and Its Implications
- The Role of Turbulence in Coronal Heating and Solar Wind Expansion
- A statistical model of three-dimensional anisotropy and intermittency in strong Alfvénic turbulence
- Fully Kinetic Simulation of 3D Kinetic Alfven Turbulence
- Diagnosing collisionless energy transfer using field-particle correlations: gyrokinetic turbulence
- Propinquity of current and vortex structures: effects on collisionless plasma heating
- Global diffusion of cosmic rays
- The Structure of Plasma Heating in Gyrokinetic Alfvénic Turbulence
- A Prospectus on Kinetic Heliophysics
- Laboratory Space Physics: Investigating the Physics of Space Plasmas in the Laboratory
- Dissipation measures in weakly-collisional plasmas
- Kinetic Turbulence in Astrophysical Plasmas: Waves and/or Structures?
- Spatially Localized Particle Energization by Landau Damping in Current Sheets Produced by Strong Alfven Wave Collisions
- Measures of Three-Dimensional Anisotropy and Intermittency in Strong Alfvénic Turbulence
- The Dynamical Generation of Current Sheets in Astrophysical Plasma Turbulence
- The Enhancement of Proton Stochastic Heating in the near-Sun Solar Wind
- Cascades and Dissipative Anomalies in Nearly Collisionless Plasma Turbulence
- Energy Dissipation and Landau Damping in Two- and Three-Dimensional Plasma Turbulence
- The Importance of Electron Landau Damping for the Dissipation of Turbulent Energy in Terrestrial Magnetosheath Plasma
- Three-dimensional magnetic reconnection in particle-in-cell simulations of anisotropic plasma turbulence
- Kinetic turbulence in fast 3D collisionless guide-field magnetic reconnection
- Collisionless energy transfer in kinetic turbulence: field-particle correlations in Fourier space
- Variability Of The Magnetic Field Power Spectrum In The Solar Wind At Electron Scales
- Magnetic Field Rotations in the Solar Wind at Kinetic Scales
- Parametric Decay Instability and Dissipation of Low-frequency Alfvén Waves in Low-beta Turbulent Plasmas
- A Model for Dissipation of Solar Wind Magnetic Turbulence by Kinetic Alfvén Waves at Electron Scales: Comparison with Observations
- Conditions for proton temperature anisotropy to drive instabilities in the solar wind
- Intermittency and Ion Temperature-Anisotropy Instabilities: Simulation and Magnetosheath Observation
- On the ion-inertial range density power spectra in solar wind turbulence
- The Development of Magnetic Field Line Wander by Plasma Turbulence
- The effect of variations in magnetic field direction from turbulence on kinetic-scale instabilities
- Effects of the Background Turbulence on the Relaxation of Ion Temperature Anisotropy in Space Plasmas
- High-energy Emission from Turbulent Electron-ion Coronae of Accreting Black Holes
- Temperature anisotropy instabilities driven by intermittent velocity shears in the solar wind
- Collisional charging of dust particles by suprathermal plasmas. II -- Regularized Kappa distributions
- Compressive Structures in the Foreshock of Collisionless Shocks
- Magnetic Influences on the Solar Wind (Ph.D. Dissertation)