Magnetic Field Amplification by Small-Scale Dynamo Action: Dependence on Turbulence Models and Reynolds and Prandtl Numbers
arXiv:1109.4571 · doi:10.1103/PhysRevE.85.026303
Abstract
The small-scale dynamo is a process by which turbulent kinetic energy is converted into magnetic energy, and thus is expected to depend crucially on the nature of turbulence. In this work, we present a model for the small-scale dynamo that takes into account the slope of the turbulent velocity spectrum v(l) ~ l^theta, where l and v(l) are the size of a turbulent fluctuation and the typical velocity on that scale. The time evolution of the fluctuation component of the magnetic field, i.e., the small-scale field, is described by the Kazantsev equation. We solve this linear differential equation for its eigenvalues with the quantum-mechanical WKB-approximation. The validity of this method is estimated as a function of the magnetic Prandtl number Pm. We calculate the minimal magnetic Reynolds number for dynamo action, Rm_crit, using our model of the turbulent velocity correlation function. For Kolmogorov turbulence (theta=1/3), we find that the critical magnetic Reynolds number is approximately 110 and for Burgers turbulence (theta=1/2) approximately 2700. Furthermore, we derive that the growth rate of the small-scale magnetic field for a general type of turbulence is Gamma ~ Re^((1-theta)/(1+theta)) in the limit of infinite magnetic Prandtl numbers. For decreasing magnetic Prandtl number (down to Pm approximately larger than 10), the growth rate of the small-scale dynamo decreases. The details of this drop depend on the WKB-approximation, which becomes invalid for a magnetic Prandtl number of about unity.
13 pages, 8 figures; published in Phys. Rev. E 2012
References in corpus (12)
- Theory of Star Formation
- Turbulence and Magnetic Fields in the Large Scale Structure of the Universe
- 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
- Mach Number Dependence of Turbulent Magnetic Field Amplification: Solenoidal versus Compressive Flows
- Numerical simulations of compressively driven interstellar turbulence: I. Isothermal gas
- A robust numerical scheme for highly compressible magnetohydrodynamics: Nonlinear stability, implementation and tests
- Intermittency and Universality in Fully-Developed Inviscid and Weakly-Compressible Turbulent Flows
- The influence of magnetic fields on the thermodynamics of primordial star formation
- Constraints on the Evolution of the Primordial Magnetic Field from the Small-Scale Cosmic Microwave Background Angular Anisotropy
- Mean-field dynamo in a turbulence with shear and kinetic helicity fluctuations
Cited by in corpus (81)
- Constraining the Statistics of Population III Binaries
- Magnetic field amplification in turbulent astrophysical plasmas
- The Small-Scale Dynamo and Non-Ideal MHD in Primordial Star Formation
- On the amplification of magnetic fields in cosmic filaments and galaxy clusters
- The Physics of Star Cluster Formation and Evolution
- A new interpretation of the far-infrared - radio correlation and the expected breakdown at high redshift
- A new density variance - Mach number relation for subsonic and supersonic, isothermal turbulence
- The Turbulent Dynamo in Highly Compressible Supersonic Plasmas
- Magnetic field amplification during gravitational collapse - Influence of initial conditions on dynamo evolution and saturation
- Saturation of the Turbulent Dynamo
- Magnetic Field Amplification in Young Galaxies
- Rotation and Internal Structure of Population III Protostars
- Formation of the first stars and black holes
- High resolution studies of massive primordial haloes
- A 3D Simulation of a Neutrino-Driven Supernova Explosion Aided By Convection and Magnetic Fields
- Magnetic fields during the formation of supermassive black holes
- Magnetic Fields in the Formation of the First Stars. I. Theory vs. Simulation
- The Small-Scale Dynamo at Low Magnetic Prandtl Numbers
- Trapping of HII regions in Population III star formation
- Seed magnetic fields in turbulent small-scale dynamos
- The small-scale dynamo: Breaking universality at high Mach numbers
- Turbulent magnetic field amplification from the smallest to the largest magnetic Prandtl numbers
- Magnetic fields in the formation of the first stars.--II Results
- Formation of the first stars
- Low-metallicity star formation: Relative impact of metals and magnetic fields
- Nonhelical turbulence and the inverse transfer of energy: A parameter study
- Galactic synchrotron emission and the FIR-radio correlation at high redshift
- Magnetic fields in primordial accretion disks
- The impact of thermodynamics on gravitational collapse: filament formation and magnetic field amplification
- The far-infrared - radio correlation in dwarf galaxies
- Efficient highly-subsonic turbulent dynamo and growth of primordial magnetic fields
- Fundamental scales in the kinematic phase of the turbulent dynamo
- Simulations and observational tests of primordial magnetic fields from Cosmic Microwave Background constraints
- Global dynamics of the interstellar medium in magnetised disc galaxies
- Magnetic field amplification by the small-scale dynamo in the early Universe
- The evolution of primordial magnetic field since its generation
- The small-scale dynamo in a multiphase supernova-driven medium
- A comparison between grid and particle methods on the small-scale dynamo in magnetised supersonic turbulence
- Gravity Versus Magnetic Fields in Forming Molecular Clouds
- Exploring the relation between turbulent velocity and density fluctuations in the stratified intracluster medium
- Primordial magnetic fields in Population III star formation: a magnetised resolution study
- Nonlinear turbulent dynamo during gravitational collapse
- The implications of dust for high-redshift protogalaxies and the formation of binary disks
- The role of the H adiabatic index in the formation of the first stars
- X-Ray Emission from Star-Forming Galaxies - Signatures of Cosmic Rays and Magnetic Fields
- Growth rate of small-scale dynamo at low magnetic Prandtl numbers
- Magnetic fields during galaxy mergers
- Enhancement of small-scale turbulent dynamo by large-scale shear
- Energy balance and Alfvén Mach numbers in compressible magnetohydrodynamic turbulence with a large-scale magnetic field
- Non-ideal magnetohydrodynamic simulations of the first star formation: the effect of ambipolar diffusion
- Compression of turbulent magnetized gas in Giant Molecular Clouds
- On the operation of the chemothermal instability in primordial star-forming clouds
- Numerical viscosity and resistivity in MHD turbulence simulations
- Global enhancement and structure formation of the magnetic field in spiral galaxies
- Fundamental MHD scales -- II: the kinematic phase of the supersonic small-scale dynamo
- Kazantsev dynamo in turbulent compressible flows
- On the Inverse Transfer of (Non-)Helical Magnetic Energy in a Decaying Magnetohydrodynamic Turbulence
- The magnetic fields of starburst galaxies. I. Identification and characterization of the thermal polarization in the galactic disk and outflow
- Supernova explosions in magnetized, primordial dark matter halos
- Dissipative magnetic structures and scales in small-scale dynamos
- Growth or Decay -- I: universality of the turbulent dynamo saturation
- Hierarchical Bayesian analysis of the velocity power spectrum in supersonic turbulence
- Magnetic fields during high redshift structure formation
- Critical magnetic Reynolds number of the turbulent dynamo in collisionless plasmas
- A model for the infrared-radio correlation of main-sequence galaxies at GHz frequencies and its variation on redshift and stellar mass
- Parameter study of decaying magnetohydrodynamic turbulence
- Magnetic dynamos in galaxy clusters: the crucial role of galaxy formation physics at high redshifts
- Population III star formation in the presence of turbulence, magnetic fields and ionizing radiation feedback
- On obliquely magnetized and differentially rotating stars
- Halo Mergers Enhance the Growth of Massive Black Hole Seeds
- Effects of Forcing on Shocks and Energy Dissipation in Interstellar and Intracluster Turbulences
- Constraints on Primordial Magnetic Fields from High Redshift Stellar Mass Density
- AHKASH: a new Hybrid particle-in-cell code for simulations of astrophysical collisionless plasma
- Far-infrared - radio correlation and magnetic field strength in star-forming early-type galaxies
- Environment matters: stronger magnetic fields in satellite galaxies
- Taking control of compressible modes: bulk viscosity and the turbulent dynamo
- Small-scale dynamo with finite correlation times
- Small-Scale Dynamo Action in Primordial Halos
- Large small-scale kinematic dynamo in protoneutron stars
- A post-hypercritical accretion small-scale dynamo in newborn neutron stars
- Fluctuation dynamos in supersonic turbulence at