Global MHD simulations of stratified and turbulent protoplanetary discs. I. Model properties
arXiv:astro-ph/0606729 · doi:10.1051/0004-6361:20065643
Abstract
We present the results of global 3-D MHD simulations of stratified and turbulent protoplanetary disc models. The aim of this work is to develop thin disc models capable of sustaining turbulence for long run times, which can be used for on-going studies of planet formation in turbulent discs. The results are obtained using two codes written in spherical coordinates: GLOBAL and NIRVANA. Both are time--explicit and use finite differences along with the Constrained Transport algorithm to evolve the equations of MHD. In the presence of a weak toroidal magnetic field, a thin protoplanetary disc in hydrostatic equilibrium is destabilised by the magnetorotational instability (MRI). When the resolution is large enough (25 vertical grid cells per scale height), the entire disc settles into a turbulent quasi steady-state after about 300 orbits. Angular momentum is transported outward such that the standard alpha parameter is roughly 4-6*10^{-3}. We find that the initial toroidal flux is expelled from the disc midplane and that the disc behaves essentially as a quasi-zero net flux disc for the remainder of the simulation. As in previous studies, the disc develops a dual structure composed of an MRI--driven turbulent core around its midplane, and a magnetised corona stable to the MRI near its surface. By varying disc parameters and boundary conditions, we show that these basic properties of the models are robust. The high resolution disc models we present in this paper achieve a quasi--steady state and sustain turbulence for hundreds of orbits. As such, they are ideally suited to the study of outstanding problems in planet formation such as disc--planet interactions and dust dynamics.
19 pages, 29 figures, accepted in Astronomy & Astrophysics
References in corpus (1)
Cited by in corpus (51)
- Accretion disc viscosity: how big is alpha?
- A Three-Dimensional View of Turbulence: Constraints on Turbulent Motions in the HD 163296 Protoplanetary Disk using DCO
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. I. The issue of convergence
- Accretion Discs with Strong Toroidal Magnetic Fields
- Vertical shear instability in accretion disc models with radiation transport
- Advection of Magnetic Fields in Accretion Disks: Not So Difficult After All
- Can dead zones create structures like a transition disk?
- Global MHD simulations of stratified and turbulent protoplanetary discs. II. Dust settling
- MAGMA: a 3D, Lagrangian magnetohydrodynamics code for merger applications
- Empirical constraints on turbulence in proto-planetary discs
- On the Linear Stability of Weakly-Ionized, Magnetized Planar Shear Flows
- 3D Radiation Non-ideal Magnetohydrodynamical Simulations Of The Inner Rim In Protoplanetary Disks
- New composite models of partially ionized protoplanetary disks
- Growth and migration of solids in evolving protostellar disks I: Methods and Analytical tests
- Global magnetohydrodynamical models of turbulence in protoplanetary disks I. A cylindrical potential on a Cartesian grid and transport of solids
- High accretion rates in magnetised Keplerian discs mediated by a Parker instability driven dynamo
- Global Hydromagnetic Simulations of Protoplanetary Disks with Stellar Irradiation and Simplified Thermochemistry
- Dynamical Evolution of Multi-Resonant Systems: the Case of GJ876
- Growing and Trapping Pebbles with Fragile Collisions of Particles in Protoplanetary Disks
- Exploring the formation by core accretion and the luminosity evolution of directly imaged planets: The case of HIP 65426 b
- Fossil magnetic field of accretion disks of young stars
- A coagulation-fragmentation model for the turbulent growth and destruction of preplanetesimals
- Global simulations of self-gravitating magnetized protoplanetary disks
- -body Simulation of Planetesimal Formation Through Gravitational Instability of a Dust Layer
- Hydrodynamical turbulence in eccentric circumbinary discs and its impact on the in situ formation of circumbinary planets
- Local simulations of MRI turbulence with meshless methods
- From Dust to Planets I: Planetesimal and Embryo Formation
- Migration and Growth of Protoplanetary Embryos II: Emergence of Proto-Gas-Giants Cores versus Super Earths' Progenitor
- The Nonlinear Ohm's Law: Plasma Heating by Strong Electric Fields and its Effects on the Ionization Balance in Protoplanetary Disks
- Large-scale magnetic field in the accretion discs of young stars: the influence of magnetic diffusion, buoyancy and Hall effect
- Millimeter Spectral Indices and Dust Trapping By Planets in Brown Dwarf Disks
- Nonlinear transverse cascade and sustenance of MRI-turbulence in Keplerian disks with an azimuthal magnetic field
- Boundary Layers of Accretion Disks: Wave-Driven Transport and Disk Evolution
- Magnetorotational instability in decretion disks of critically rotating stars and the outer structure of Be and Be/X-ray disks
- The Effects of Protostellar Disk Turbulence on CO Emission Lines: A Comparison Study of Disks with Constant CO Abundance vs. Chemically Evolving Disks
- Gas accretion onto Jupiter mass planets in discs with laminar accretion flows
- Migration of gap-opening planets in 3D stellar-irradiated accretion disks
- Global multifluid simulations of the magnetorotational instability in radially stratified protoplanetary disks
- Meridional Circulation driven by Planetary Spiral Wakes in Radiative and Magnetized Protoplanetary Discs
- Global magnetohydrodynamic simulations of the inner regions of protoplanetary discs. I. Zero-net flux regime
- The Role of Thermal Instability in Accretion Outbursts in High-Mass Stars
- Turbulent protostellar discs
- Global simulations of magnetorotational turbulence III: influence of field configuration and mass injection
- Radiative magneto-hydrodynamics in massive star formation and accretion disks
- Laboratory modeling of MHD accretion disks
- Linear bending wave propagation in laminar and turbulent discs
- Episodic accretion in high-mass star formation: An analysis of thermal instability for axially symmetric disks
- Rotational Disruption of Dust and Ice by Radiative Torques in Protoplanetary Disks and Implications for Observations
- Dynamics of magnetoviscous warped discs around compact objects
- Protoplanetary disk formation from the collapse of a prestellar core
- Planetesimal gravitational collapse in a gaseous environment: Thermal and dynamic evolution