On Kinetic Slow Modes, Fluid Slow Modes, and Pressure-balanced Structures in the Solar Wind
arXiv:1703.03040 · doi:10.3847/1538-4357/aa6a56
Abstract
Observations in the solar wind suggest that the compressive component of inertial-range solar-wind turbulence is dominated by slow modes. The low collisionality of the solar wind allows for non-thermal features to survive, which suggests the requirement of a kinetic plasma description. The least-damped kinetic slow mode is associated with the ion-acoustic (IA) wave and a non-propagating (NP) mode. We derive analytical expressions for the IA-wave dispersion relation in an anisotropic plasma in the framework of gyrokinetics and then compare them to fully-kinetic numerical calculations, results from two-fluid theory, and MHD. This comparison shows major discrepancies in the predicted wave phase speeds from MHD and kinetic theory at moderate to high . MHD and kinetic theory also dictate that all plasma normal modes exhibit a unique signature in terms of their polarization. We quantify the relative amplitude of fluctuations in the three lowest particle velocity moments associated with IA and NP modes in the gyrokinetic limit and compare these predictions with MHD results and in-situ observations of the solar-wind turbulence. The agreement between the observations of the wave polarization and our MHD predictions is better than the kinetic predictions, suggesting that the plasma behaves more like a fluid in the solar wind than expected.
8 pages, 5 figures
References in corpus (10)
- Recent progress in astrophysical plasma turbulence from solar wind observations
- Phase mixing vs. nonlinear advection in drift-kinetic plasma turbulence
- Magnetorotational Turbulence and Dynamo in a Collisionless Plasma
- Multi-Species Measurements of the Firehose and Mirror Instability Thresholds in the Solar Wind
- Kinetic cascade beyond magnetohydrodynamics of solar wind turbulence in two-dimensional hybrid simulations
- Collisionless Isotropization of the Solar-Wind Protons by Compressive Fluctuations and Plasma Instabilities
- Inertial-Range Kinetic Turbulence in Pressure-Anisotropic Astrophysical Plasmas
- PIC Simulations of the Effect of Velocity Space Instabilities on Electron Viscosity and Thermal Conduction
- Multi-scale Pressure-balanced Structures in Three-dimensional Magnetohydrodynamic Turbulence
- The Quasilinear Premise for the Modeling of Plasma Turbulence
Cited by in corpus (33)
- The multi-scale nature of the solar wind
- The Evolution and Role of Solar Wind Turbulence in the Inner Heliosphere
- Evidence for Electron Landau Damping in Space Plasma Turbulence
- Origins of the Ambient Solar Wind: Implications for Space Weather
- Nature of Kinetic Scale Turbulence in the Earth's Magnetosheath
- Fluidization of collisionless plasma turbulence
- Reconciling cosmic-ray transport theory with phenomenological models motivated by Milky-Way data
- Astrophysical gyrokinetics: Turbulence in pressure-anisotropic plasmas at ion scales and beyond
- ALPS: The Arbitrary Linear Plasma Solver
- Diagnosing collisionless energy transfer using field-particle correlations: Alfven-Ion Cyclotron Turbulence
- Density Fluctuations Associated with Turbulence and Waves: First Observations by Solar Orbiter
- Density Fluctuations in the Solar Wind Driven by Alfvén Wave Parametric Decay
- On the Scaling Properties of Magnetic Field Fluctuations Through the Inner Heliosphere
- Three-dimensional magnetic reconnection in particle-in-cell simulations of anisotropic plasma turbulence
- The Parametric Decay Instability of Alfven waves in Turbulent Plasmas and the Applications in the Solar Wind
- Self-sustaining sound in collisionless, high-beta plasma
- Spacetime Hall-MHD turbulence at sub-ion scales: structures or waves?
- The Impact of Turbulent Solar Wind Fluctuations on Solar Orbiter Plasma Proton Measurements
- Parametric Decay Instability and Dissipation of Low-frequency Alfvén Waves in Low-beta Turbulent Plasmas
- The Fluid-like Behavior of Kinetic Alfvén Turbulence in Space Plasma
- PIC Simulations of Velocity-Space Instabilities in a Decreasing Magnetic Field: Viscosity and Thermal Conduction
- Turbulence Properties of Interplanetary Coronal Mass Ejections in the Inner Heliosphere: Dependence on Proton Beta and Flux Rope Structure
- Conditions for proton temperature anisotropy to drive instabilities in the solar wind
- Heating of the Solar Wind by Ion Acoustic Waves
- Expansion of a radially symmetric blast shell into a uniformly magnetized plasma
- A Measurement of the Effective Mean-Free-Path of Solar Wind Protons
- Sub-ion scale Compressive Turbulence in the Solar wind: MMS spacecraft potential observations
- Effect of Spherical Polarization on the Magnetic Spectrum of the Solar Wind
- High-energy Emission from Turbulent Electron-ion Coronae of Accreting Black Holes
- On the Regulation of the Solar Wind Helium Abundance by the Hydrogen Compressibility
- Quasi-perpendicular fast magnetosonic shock with wave precursor in collisionless plasma
- Nature of Transonic Sub-Alfvénic Turbulence and Density Fluctuations in the Near-Sun Solar Wind: Insights from Magnetohydrodynamic Simulations and Nearly-Incompressible Models
- Transport of electrons in tangled magnetic fields