Turbulent dynamo in a conducting fluid and partially ionized gas
arXiv:1608.05161 · doi:10.3847/1538-4357/833/2/215
Abstract
By following the Kazantsev theory and taking into account both microscopic and turbulent diffusion of magnetic fields, we develop a unified treatment of the kinematic and nonlinear stages of turbulent dynamo, and study the dynamo process for a full range of magnetic Prandtl number Pm and ionization fractions. We find a striking similarity between the dependence of dynamo behavior on Pm in a conducting fluid and R (a function of ionization fraction) in partially ionized gas. In a weakly ionized medium, the kinematic stage is largely extended, including not only exponential growth but a new regime of dynamo characterized by linear-in-time growth of magnetic field strength, and the resulting magnetic energy is much higher than the kinetic energy carried by viscous-scale eddies. Unlike the kinematic stage, the subsequent nonlinear stage is unaffected by microscopic diffusion processes and has a universal linear-in-time growth of magnetic energy with the growth rate as a constant fraction of the turbulent energy transfer rate, showing good agreement with earlier numerical results. Applying the analysis to the first stars and galaxies, we find that the kinematic stage is able to generate a field strength only an order of magnitude smaller than the final saturation value. But the generation of large-scale magnetic fields can only be accounted for by the relatively inefficient nonlinear stage and requires longer time than the free-fall time. It suggests that magnetic fields may not have played a dynamically important role during the formation of the first stars.
21 pages, 2 figures, accepted for publication in ApJ
References in corpus (11)
- Simulations of nonhelical hydromagnetic turbulence
- Strong magnetic fields in normal galaxies at high redshifts
- A new Jeans resolution criterion for (M)HD simulations of self-gravitating gas: Application to magnetic field amplification by gravity-driven turbulence
- The First Galaxies: Assembly, Cooling and the Onset of Turbulence
- On magnetic field generation in Kolmogorov turbulence
- Numerical demonstration of fluctuation dynamo at low magnetic Prandtl numbers
- The Biermann Battery in Cosmological MHD Simulations of Population III Star Formation
- Self-similar energetics in large clusters of galaxies
- Folded Fields as the Source of Extreme Radio-Wave Scattering in the Galactic Center
- MHD Turbulence, Turbulent Dynamo and Applications
- Fluctuation Dynamo and Turbulent Induction at Small Prandtl Number
Cited by in corpus (48)
- 3D Turbulent Reconnection: Theory, Tests and Astrophysical Implications
- Cosmic-ray transport from AMS-02 B/C data: benchmark models and interpretation
- Cosmic ray transport in starburst galaxies
- Galactic Dynamos
- Magnetic Fields in the Formation of the First Stars. I. Theory vs. Simulation
- Magnetic field amplification in accretion discs around the first stars: implications for the primordial IMF
- Adiabatic non-resonant acceleration in magnetic turbulence and hard spectra of gamma-ray bursts
- Magnetic field amplification in supernova remnants
- Magnetic fields in the formation of the first stars.--II Results
- Turbulent Magnetic Field Amplification by the Interaction of Shock Wave and Inhomogeneous Medium
- Turbulence in a self-gravitating molecular cloud core
- Anisotropies in Compressible MHD Turbulence: Probing Magnetic Fields and Measuring Magnetization
- Fundamental scales in the kinematic phase of the turbulent dynamo
- Efficient highly-subsonic turbulent dynamo and growth of primordial magnetic fields
- Plasmoid Instability in the Multiphase Interstellar Medium
- Nonlinear turbulent dynamo during gravitational collapse
- On the broad-band synchrotron spectra of pulsar wind nebulae
- Shock acceleration with oblique and turbulent magnetic fields
- Synchrotron Intensity Gradient Revealing Magnetic Fields in Galaxy Clusters
- Amplification of turbulence in contracting prestellar cores in primordial minihalos
- Turbulent reconnection acceleration
- Nature of Striation in 21 cm Channel Maps: Velocity Caustics
- Projected velocity statistics of interstellar turbulence
- Energy balance and Alfvén Mach numbers in compressible magnetohydrodynamic turbulence with a large-scale magnetic field
- HAWC+ Far-Infrared Observations of the Magnetic Field Geometry in M51 and NGC 891
- Non-ideal magnetohydrodynamic simulations of the first star formation: the effect of ambipolar diffusion
- Multi-Phase Magnetic Fields in the Galaxy NGC 3627
- Turbulent dynamo in a weakly ionized medium
- Fundamental MHD scales -- II: the kinematic phase of the supersonic small-scale dynamo
- Growth or Decay -- I: universality of the turbulent dynamo saturation
- Lagrangian statistics of a shock-driven turbulent dynamo in decaying turbulence
- Gravitational Fragmentation of Extremely Metal-poor Circumstellar Discs
- Synchrotron Polarization of Gamma-Ray Burst Afterglow Shocks with Hydrodynamic-scale Turbulent Magnetic Field
- Cosmic ray diffusion in magnetic fields amplified by nonlinear turbulent dynamo
- Amplification and saturation of turbulent magnetic field in collapsing primordial gas clouds
- Ambipolar diffusion in large Prandtl number turbulence
- X-ray polarization: A view deep inside cosmic ray driven turbulence and particle acceleration in supernova remnants
- On the injection scale of the turbulence in the partially ionized very local interstellar medium
- Role of magnetic pressure forces in fluctuation dynamo saturation
- Gradient measurement of synchrotron polarization diagnostic: Application to spatially separated emission and Faraday rotation regions
- Radial Profiles of Non-thermal Emission from Supernova Remnant RX J1713.7-3946
- Taking control of compressible modes: bulk viscosity and the turbulent dynamo
- Property of downstream turbulence driven by the special relativistic shock-clump interaction
- Probing the Morphology of Polarized Emission Induced by Fluctuation Dynamo using Minkowski Functionals
- Kiloparsec-scale turbulence driven by reionization may grow intergalactic magnetic fields
- Synchrotron spectra of GRB prompt emission and pulsar wind nebulae
- Large small-scale kinematic dynamo in protoneutron stars
- Fluctuation dynamos in supersonic turbulence at