Contribution of cyclotron-resonant damping to kinetic dissipation of interplanetary turbulence
arXiv:astro-ph/9809017 · doi:10.1086/311698
Abstract
We examine some implications of inertial range and dissipation range correlation and spectral analyses extracted from 33 intervals of Wind magnetic field data. When field polarity and signatures of cross helicity and magnetic helicity are examined, most of the datasets suggest some role of cyclotron resonant dissipative processes involving thermal protons. We postulate that an active spectral cascade into the dissipation range is balanced by a combination of cyclotron-resonant and non-cyclotron-resonant kinetic dissipation mechanisms, of which only the former induces a magnetic helicity signature. A rate balance theory, constrained by the data, suggests that the ratio of the two mechanisms is of order unity. While highly simplified, this approach appears to account for several observed features, and explains why complete cyclotron absorption, and the corresponding pure magnetic helicity signature, is usually not observed.
With 1 figure; accepted by Astrophys. J. Lett., September 1, 1998
Cited by in corpus (40)
- A Model of Turbulence in Magnetized Plasmas: Implications for the Dissipation Range in the Solar Wind
- Cosmic Ray Scattering and Streaming in Compressible Magnetohydrodynamic Turbulence
- Global scale-invariant dissipation in collisionless plasma turbulence
- Incorporating Kinetic Physics into a Two-Fluid Solar-Wind Model with Temperature Anisotropy and Low-Frequency Alfven-Wave Turbulence
- Coronal heating distribution due to low-frequency wave-driven turbulence
- Electron and proton heating by solar wind turbulence
- Enhanced Magnetic Compressibility and Isotropic Scale-Invariance at Sub-Ion Larmor Scales in Solar Wind Turbulence
- Radial Dependence of the Frequency Break Between Fluid and Kinetic Scales in the Solar Wind Fluctuations
- Multi-scale Hall-MHD turbulence in the solar wind
- Turbulence, Magnetic Reconnection in Turbulent Fluids and Energetic Particle Acceleration
- The Role of Proton-Cyclotron Resonance as a Dissipation Mechanism in Solar Wind Turbulence: A Statistical Study at Ion-Kinetic Scales
- A Dynamical Model of Plasma Turbulence in the Solar Wind
- On the Interpretation of Magnetic Helicity Signatures in the Dissipation Range of Solar Wind Turbulence
- Helicity Condensation as the Origin of Coronal and Solar Wind Structure
- Nature of the MHD and kinetic scale turbulence in the magnetosheath of Saturn: Cassini observations
- Differential kinetic dynamics and heating of ions in the turbulent solar wind
- The In Situ Signature of Cyclotron Resonant Heating
- von Kármán energy decay and heating of protons and electrons in a kinetic turbulent plasma
- Physical Interpretation of the Angle Dependent Magnetic Helicity Spectrum in the Solar Wind: The Nature of Turbulent Fluctuations near the Proton Gyroradius Scale
- Laboratory Space Physics: Investigating the Physics of Space Plasmas in the Laboratory
- Inner-Heliosphere Signatures of Ion-Scale Dissipation and Nonlinear Interaction
- Inertial range turbulence in kinetic plasmas
- The dissipation of solar wind turbulent fluctuations at electron scales
- Damping of MHD turbulence in Solar Flares
- Turbulence in the outer heliosphere
- Coherent events at ion scales in the inner Heliosphere: \textit{Parker Solar Probe} observations during the first Encounter
- Turbulent electromagnetic fields at sub-proton scales: two-fluid and full-kinetic plasma simulations
- von Kármán-Howarth equation for three-dimensional two-fluid plasmas
- Solar Wind Turbulence Around Mars: Relation Between The Energy Cascade Rate And The Proton Cyclotron Waves Activity
- The incompressible energy cascade rate in anisotropic solar wind turbulence
- Reconnection outflow generated turbulence in the solar wind
- Collisionless Damping of Fast MHD Waves in Magneto-rotational Winds
- Free energy sources in current sheets formed in collisionless plasma turbulence
- Fully Kinetic Simulations of Proton-Beam-Driven Instabilities from Parker Solar Probe Observations
- Relating the Solar Wind Turbulence Spectral Break at the Dissipation Range with an Upstream Spectral Bump at Planetary Bow Shocks
- Resonant whistler-electron interactions: MMS observations vs. test-particle simulation
- Role of Parallel Solenoidal Electric Field on Energy Conversion in 2.5D Decaying Turbulence with a Guide Magnetic Field
- Does Turbulence along the Coronal Current Sheet Drive Ion Cyclotron Waves?
- Ion-Scale Solitary Structures in the Solar Wind Observed by Solar Orbiter and Parker Solar Probe
- Current sheets, plasmoids and flux ropes in the heliosphere. Part II: Theoretical aspects