Damping of Alfven waves by Turbulence and its Consequences: from Cosmic-Rays Streaming to Launching Winds
arXiv:1607.02042 · doi:10.3847/1538-4357/833/2/131
Abstract
This paper considers turbulent damping of Alfven waves in magnetized plasmas. We identify two cases of damping, one related to damping of cosmic rays streaming instability, the other related to damping of Alfven waves emitted by a macroscopic wave source, e.g. stellar atmosphere. The physical difference between the two cases is that in the former case the generated waves are emitted in respect to the local direction of magnetic field, in the latter in respect to the mean field. The scaling of damping is different in the two cases. We the regimes of turbulence ranging from subAlfvenic to superAlfvenic we obtain analytical expressions for the damping rates and define the ranges of applicability of these expressions. Describing the damping of the streaming instability, we find that for subAlfvenic turbulence the range of cosmic ray energies influenced by weak turbulence is unproportionally large compared to the range of scales that the weak turbulence is present. On the contrary, the range of cosmic ray energies affected by strong Alfvenic turbulence is rather limited. A number of astrophysical applications of the process ranging from launching of stellar and galactic winds to propagation of cosmic rays in galaxies and clusters of galaxies is considered. In particular, we discuss how to reconcile the process of turbulent damping with the observed isotropy of the Milky Way cosmic rays.
18 pages, submitted to ApJ
References in corpus (23)
- Theory of Star Formation
- Compressible Turbulence in Galaxy Clusters: Physics and Stochastic Particle Re-acceleration
- Numerical Tests of Fast Reconnection in Weakly Stochastic Magnetic Fields
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- Imbalanced Strong MHD Turbulence
- Cosmic rays and Radio Halos in galaxy clusters : new constraints from radio observations
- Role of cross helicity in magnetohydrodynamic turbulence
- Strong Imbalanced Turbulence
- Velocity centroids as tracers of the turbulent velocity statistics
- Strong Anisotropic MHD Turbulence with Cross Helicity
- A model of acceleration of Anomalous Cosmic Rays by Reconnection in the Heliosheath
- Turbulence and Particle Acceleration in Giant Radio Haloes: the Origin of Seed Electrons
- Cosmic Ray Scattering in Compressible Turbulence
- Particle acceleration mechanisms
- Self-similar energetics in large clusters of galaxies
- Structure of Stationary Strong Imbalanced Turbulence
- Turbulent General Magnetic Reconnection
- On the Nature of Incompressible Magnetohydrodynamic Turbulence
- Self-generated turbulence in magnetic reconnection
- Measuring the Alfvenic Nature of the Interstellar Medium: Velocity Anisotropy Revisited
- Interchange Reconnection Alfven Wave Generation
- Compressible Relativistic Magnetohydrodynamic Turbulence in Magnetically-Dominated Plasmas And Implications for A Strong-Coupling Regime
- MHD Turbulence, Turbulent Dynamo and Applications
Cited by in corpus (27)
- Cosmic ray-driven galactic winds: streaming or diffusion?
- Cosmic ray transport in starburst galaxies
- Cosmic ray feedback from supernovae in dwarf galaxies
- Diffusion of cosmic rays in MHD turbulence with magnetic mirrors
- Cosmic Ray Transport, Energy Loss, and Influence in the Multiphase Interstellar Medium
- Magnetohydrodynamic-Particle-in-Cell Simulations of the Cosmic-Ray Streaming Instability: Linear Growth and Quasi-linear Evolution
- Standard Self-Confinement and Extrinsic Turbulence Models for Cosmic Ray Transport are Fundamentally Incompatible with Observations
- Reconciling cosmic-ray transport theory with phenomenological models motivated by Milky-Way data
- Cosmic-Ray Transport in Simulations of Star-forming Galactic Disks
- Magnetic field strength from turbulence theory (I): Using differential measure approach (DMA)
- High Effects on Cosmic Ray Streaming in Galaxy Clusters
- Can the observed E/B ratio for dust galactic foreground be explained by sub-Alfvenic turbulence?
- The impact of astrophysical dust grains on the confinement of cosmic rays
- Grammage of cosmic rays in the proximity of supernova remnants embedded in a partially ionized medium
- Influence of Ion-Neutral Damping on the Cosmic-Ray Streaming Instability: Magnetohydrodynamic Particle-in-cell Simulations
- A Consistent Reduced-Speed-of-Light Formulation of Cosmic Ray Transport Valid in Weak and Strong-Scattering Regimes
- Cosmic ray streaming in the turbulent interstellar medium
- Towards First-principle Characterization of Cosmic-ray Transport Coefficients from Multi-scale Kinetic Simulations
- Anomalous compressible mode generation by global frame projections of pure Alfven mode
- Stress-Testing Cosmic Ray Physics: The Impact of Cosmic Rays on the Surviving Disk of Ram Pressure Stripped Galaxies
- Role of Longitudinal Waves in Alfvén-wave-driven Solar Wind
- Neutral hydrogen filaments in interstellar media: Are they physical?
- Revisiting the role of cosmic-ray driven Alfvén waves in pre-existing magnetohydrodynamic turbulence. I. Turbulent damping rates and feedback on background fluctuations
- CRexit: how different cosmic ray transport modes affect thermal instability in the circumgalactic medium
- Trans-Alfvenic Magnetohydrodynamic Turbulence in the Vicinity of Supernova Remnant Cassiopeia-A Shocks
- Linear Analysis and Simulations of the Cosmic-Ray Streaming Instability: the Importance of Oblique Waves
- PeVatron Candidate SNR G106.3+2.7 in a Low-density Cavity: a Multiwavelength Test