Interpreting Magnetic Variance Anisotropy Measurements in the Solar Wind
arXiv:1205.0749 · doi:10.1088/0004-637X/753/2/107
Abstract
The magnetic variance anisotropy () of the solar wind has been used widely as a method to identify the nature of solar wind turbulent fluctuations; however, a thorough discussion of the meaning and interpretation of the has not appeared in the literature. This paper explores the implications and limitations of using the as a method for constraining the solar wind fluctuation mode composition and presents a more informative method for interpreting spacecraft data. The paper also compares predictions of the from linear theory to nonlinear turbulence simulations and solar wind measurements. In both cases, linear theory compares well and suggests the solar wind for the interval studied is dominantly Alfvénic in the inertial and dissipation ranges to scales .
15 pages, 10 figures, accepted for publication in The Astrophysical Journal
References in corpus (8)
- Anisotropic scaling of magnetohydrodynamic turbulence
- Dynamic Alignment in Driven Magnetohydrodynamic Turbulence
- Wave turbulence in incompressible Hall MHD
- New insight into short wavelength solar wind fluctuations from Vlasov theory
- A Weakened Cascade Model for Turbulence in Astrophysical Plasmas
- Numerical Measurements of the Spectrum in Magnetohydrodynamic Turbulence
- Evidence of Critical Balance in Kinetic Alfven Wave Turbulence Simulations
- Power Anisotropy in the Magnetic Field Power Spectral Tensor of Solar Wind Turbulence
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- The multi-scale nature of the solar wind
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- The Nature of Subproton Scale Turbulence in the Solar Wind
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- The Role of Proton-Cyclotron Resonance as a Dissipation Mechanism in Solar Wind Turbulence: A Statistical Study at Ion-Kinetic Scales
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- A Dynamical Model of Plasma Turbulence in the Solar Wind
- Validity of the Taylor Hypothesis for Linear Kinetic Waves in the Weakly Collisional Solar Wind
- Diagnosing collisionless energy transfer using field-particle correlations: gyrokinetic turbulence
- Coherent structures at ion scales in fast solar wind: {\it Cluster} observations
- Subproton-scale cascades in solar wind turbulence: driven hybrid-kinetic simulations
- Spectral Features of Magnetic Fluctuations at Proton Scales from Fast to Slow Solar Wind
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- The Violation of the Taylor Hypothesis in Measurements of Solar Wind Turbulence
- Radial evolution of the wave-vector anisotropy of solar wind turbulence between 0.3 and 1 AU
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- Turbulence/wave transmission at an ICME-driven shock observed by Solar Orbiter and Wind
- Dynamic anisotropy in MHD turbulence induced by mean magnetic field
- Diagnosing collisionless energy transfer using field-particle correlations: Alfven-Ion Cyclotron Turbulence
- Kinetic plasma turbulence: recent insights and open questions from 3D3V simulations
- Coherent events at ion scales in the inner Heliosphere: \textit{Parker Solar Probe} observations during the first Encounter
- Stochastic proton heating by kinetic-Alfvén-wave turbulence in moderately high- plasmas
- Three-dimensional magnetic reconnection in particle-in-cell simulations of anisotropic plasma turbulence
- Variability Of The Magnetic Field Power Spectrum In The Solar Wind At Electron Scales
- The incompressible energy cascade rate in anisotropic solar wind turbulence
- Anisotropies of the magnetic field fluctuations at kinetic scales in the solar wind : Cluster observations
- Linking Fluid and Kinetic Scales in Solar Wind Turbulence
- Temporal and Spatial Turbulent Spectra of MHD Plasma and an Observation of Variance Anisotropy
- Forward Modeling of Reduced Power Spectra From Three-Dimensional k-Space
- The Development of Magnetic Field Line Wander by Plasma Turbulence
- A Hybrid Gyrokinetic Ion and Isothermal Electron Fluid Code for Astrophysical Plasma