Numerical simulations of the magnetorotational instability in protoneutron stars: I. Influence of buoyancy
arXiv:1501.07636 · doi:10.1093/mnras/stv727
Abstract
The magneto-rotational instability (MRI) is considered to be a promising mechanism to amplify the magnetic field in fast rotating protoneutron stars. In contrast to accretion disks, radial buoyancy driven by entropy and lepton fraction gradients is expected to have a dynamical role as important as rotation and shear. We investigate the poorly known impact of buoyancy on the non-linear phase of the MRI, by means of three dimensional numerical simulations of a local model in the equatorial plane of a protoneutron star. The use of the Boussinesq approximation allows us to utilise a shearing box model with clean shearing periodic boundary conditions, while taking into account the buoyancy driven by radial entropy and composition gradients. We find significantly stronger turbulence and magnetic fields in buoyantly unstable flows. On the other hand, buoyancy has only a limited impact on the strength of turbulence and magnetic field amplification for buoyantly stable flows in the presence of a realistic thermal diffusion. The properties of the turbulence are, however, significantly affected in the latter case. In particular, the toroidal components of the magnetic field and of the velocity become even more dominant with respect to the poloidal ones. Furthermore, we observed in the regime of stable buoyancy the formation of long lived coherent structures such as channel flows and zonal flows. Overall, our results support the ability of the MRI to amplify the magnetic field significantly even in stably stratified regions of protoneutron stars.
22 pages, 15 figures, accepted for publication in MNRAS
References in corpus (19)
- Magnetorotationally driven Supernovae as the origin of early galaxy -process elements?
- Magnetorotational Core-Collapse Supernovae in Three Dimensions
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. II. The effect of transport coefficients
- Impact of dimensionless numbers on the efficiency of MRI-induced turbulent transport
- Hall-effect Controlled Gas Dynamics in Protoplanetary Disks: II. Full 3D Simulations toward the Outer Disk
- Semi-global simulations of the magneto-rotational instability in core collapse supernovae
- Magnetorotational collapse of massive stellar cores to neutron stars: Simulations in full general relativity
- Convective Overstability in radially stratified accretion disks under thermal relaxation
- Special Relativistic Simulations of Magnetically-dominated Jets in Collapsing Massive Stars
- Magnetic Flux Concentration and Zonal Flows in Magnetorotational Instability Turbulence
- The Proto-neutron Star Phase of the Collapsar Model and the Route to Long-soft Gamma-ray Bursts and Hypernovae
- Possible Evidence for Free Precession of a Strongly Magnetized Neutron Star in the Magnetar 4U 0142+61
- Convective overstability in accretion disks: 3D linear analysis and nonlinear saturation
- Convection Causes Enhanced Magnetic Turbulence in Accretion Disks in Outburst
- The signature of the magnetorotational instability in the Reynolds and Maxwell stress tensors in accretion discs
- Neutrino viscosity and drag: impact on the magnetorotational instability in protoneutron stars
- The Effect of Neutrino Radiation on Magnetorotational Instability in Proto-Neutron Stars
- Magnetohydrodynamic Turbulence Powered by Magnetorotational Instability in Nascent Proto-Neutron Stars
- Magnetic Turbulence and Thermodynamics in the Inner Region of Protoplanetary Discs
Cited by in corpus (14)
- Searches for Continuous-Wave Gravitational Radiation
- Anisotropic emission of neutrino and gravitational-wave signals from rapidly rotating core-collapse supernovae
- Pre-collapse Properties of Superluminous Supernovae and Long Gamma-Ray Burst Progenitor Models
- MRI-driven dynamos in protoneutron stars
- A new scenario for magnetar formation: Tayler-Spruit dynamo in a proto-neutron star spun up by fallback
- Insights into non-axisymmetric instabilities in three-dimensional rotating supernova models with neutrino and gravitational-wave signatures
- General relativistic magnetohydrodynamic dynamo in thick accretion disks: fully nonlinear simulations
- Two-dimensional numerical study for magnetic field dependence of neutrino-driven core-collapse supernova models
- MRI-driven dynamo at very high magnetic Prandtl numbers
- Anisotropic Quark Stars with an Interacting Quark Equation of State within the Complexity Factor Formalism
- A Comparison of 2D Magnetohydrodynamic Supernova Simulations with the CoCoNuT-FMT and Aenus-Alcar Codes
- Detection possibility of continuous gravitational waves from rotating magnetized neutron stars
- How to form a millisecond magnetar? Magnetic field amplification in protoneutron stars
- Large small-scale kinematic dynamo in protoneutron stars