Electron-scale reduced fluid models with gyroviscous effects
arXiv:1704.02576 · doi:10.1017/S0022377817000514
Abstract
Reduced fluid models for collisionless plasmas including electron inertia and finite Larmor radius corrections are derived for scales ranging from the ion to the electron gyroradii. Based either on pressure balance or on the incompressibility of the electron fluid, they respectively capture kinetic Alfvén waves (KAWs) or whistler waves (WWs), and can provide suitable tools for reconnection and turbulence studies. Both isothermal regimes and Landau fluid closures permitting anisotropic pressure fluctuations are considered. For small values of the electron beta parameter , a perturbative computation of the gyroviscous force valid at scales comparable to the electron inertial length is performed at order , which requires second-order contributions in a scale expansion. Comparisons with kinetic theory are performed in the linear regime. The spectrum of transverse magnetic fluctuations for strong and weak turbulence energy cascades is also phenomenologically predicted for both types of waves. In the case of moderate ion to electron temperature ratio, a new regime of KAW turbulence at scales smaller than the electron inertial length is obtained, where the magnetic energy spectrum decays like , thus faster than the spectrum of WW turbulence.
29 pages, 4 figures
References in corpus (20)
- Astrophysical gyrokinetics: kinetic and fluid turbulent cascades in magnetized weakly collisional plasmas
- Scaling of the electron dissipation range of solar wind turbulence
- Nature of Kinetic Scale Turbulence in the Earth's Magnetosheath
- Reduced fluid-kinetic equations for low-frequency dynamics, magnetic reconnection and electron heating in low-beta plasmas
- New insight into short wavelength solar wind fluctuations from Vlasov theory
- Kinetic Turbulence in the Terrestrial Magnetosheath: Cluster Observations
- Fast collisionless reconnection and electron heating in strongly magnetized plasmas
- Subproton-scale cascades in solar wind turbulence: driven hybrid-kinetic simulations
- A Landau fluid model for warm collisionless plasmas
- Turbulent Dissipation Challenge: A community Driven Effort
- A model for the non-universal power-law of the solar wind sub-ion scale magnetic spectrum
- Extended MHD turbulence and its applications to the solar wind
- Influence of the nonlinearity parameter on the solar-wind sub-ion magnetic energy spectrum: FLR-Landau fluid simulations
- von Kármán-Howarth equation for three-dimensional two-fluid plasmas
- Hamiltonian and action formalisms for two-dimensional gyroviscous MHD
- Exact scaling laws for helical three-dimensional two-fluid turbulent plasmas
- Electron MHD: dynamics and turbulence
- Entanglement of helicity and energy in kinetic Alfven wave/whistler turbulence
- Two-fluid turbulence including electron inertia
- Gyromap for a two-dimensional Hamiltonian fluid model derived from Braginskii's closure for magnetized plasmas
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- Constraints on ion vs. electron heating by plasma turbulence at low beta
- Role of reconnection in inertial kinetic-Alfven turbulence
- Fluid and gyrofluid modeling of low- plasmas: phenomenology of kinetic Alfvén wave turbulence
- A solvable model of Vlasov-kinetic plasma turbulence in Fourier-Hermite phase space
- Imbalanced kinetic Alfvén wave turbulence: from weak turbulence theory to nonlinear diffusion models for the strong regime
- Variability Of The Magnetic Field Power Spectrum In The Solar Wind At Electron Scales
- Anisotropies of the magnetic field fluctuations at kinetic scales in the solar wind : Cluster observations
- Nonlinear Reconnection in Magnetized Turbulence
- Turbulence in Magnetized Pair Plasmas
- Electromagnetic instabilities and plasma turbulence driven by electron-temperature gradient
- Stability of superthermal strahl electrons in the solar wind
- Tearing instability in Alfvén and kinetic-Alfvén turbulence
- Identification of high order closure terms from fully kinetic simulations using machine learning
- Influence of ion-to-electron temperature ratio on tearing instability and resulting subion-scale turbulence in a low- collisionless plasma
- A Hamiltonian gyrofluid model based on a quasi-static closure
- Wave Turbulence in Inertial Electron Magnetohydrodynamics
- A class of three-dimensional gyroviscous magnetohydrodynamic models
- Gyrofluid simulations of turbulence and reconnection in space plasmas
- Turbulent heating in collisionless low-beta plasmas: imbalance, Landau damping, and electron-ion energy partition
- Magnetic field turbulence in the solar wind at sub-ion scales: in situ observations and numerical simulations