Magnetically driven accretion in protoplanetary discs
arXiv:1508.00904 · doi:10.1093/mnras/stv2070
Abstract
We characterize magnetically driven accretion at radii between 1 au and 100 au in protoplanetary discs, using a series of local non-ideal magnetohydrodynamic (MHD) simulations. The simulations assume a Minimum Mass Solar Nebula (MMSN) disc that is threaded by a net vertical magnetic field of specified strength. Confirming previous results, we find that the Hall effect has only a modest impact on accretion at 30 au, and essentially none at 100 au. At 1-10 au the Hall effect introduces a pronounced bi-modality in the accretion process, with vertical magnetic fields aligned to the disc rotation supporting a strong laminar Maxwell stress that is absent if the field is anti-aligned. In the anti-aligned case, we instead find evidence for bursts of turbulent stress at 5-10 au, which we tentatively identify with the non-axisymmetric Hall-shear instability. The presence or absence of these bursts depends upon the details of the adopted chemical model, which suggests that appreciable regions of actual protoplanetary discs might lie close to the borderline between laminar and turbulent behaviour. Given the number of important control parameters that have already been identified in MHD models, quantitative predictions for disc structure in terms of only radius and accretion rate appear to be difficult. Instead, we identify robust qualitative tests of magnetically driven accretion. These include the presence of turbulence in the outer disc, independent of the orientation of the vertical magnetic fields, and a Hall-mediated bi-modality in turbulent properties extending from the region of thermal ionization to 10 au.
accepted to MNRAS after very minor revisions
References in corpus (10)
- PLUTO: a Numerical Code for Computational Astrophysics
- Global simulations of protoplanetary disks with ohmic resistivity and ambipolar diffusion
- Magnetic fields in protoplanetary disks
- Constraining the X-ray and Cosmic Ray Ionization Chemistry of the TW Hya Protoplanetary Disk: Evidence for a Sub-interstellar Cosmic Ray Rate
- Hall-effect Controlled Gas Dynamics in Protoplanetary Disks: II. Full 3D Simulations toward the Outer Disk
- Heat and Dust in Active Layers of Protostellar Disks
- On the Linear Stability of Weakly-Ionized, Magnetized Planar Shear Flows
- Signatures of MRI-Driven Turbulence in Protoplanetary Disks: Predictions for ALMA Observations
- Angular momentum transport in protostellar discs
- Gravito-Turbulent Disks in 3D: Turbulent Velocities vs. Depth
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- Modeling protoplanetary disk SEDs with artificial neural networks: Revisiting the viscous disk model and updated disk masses
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- A Three-dimensional Simulation of a Magnetized Accretion Disk: Fast Funnel Accretion onto a Weakly Magnetized Star
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- Prompt planetesimal formation beyond the snow line
- Low mass planet migration in magnetically torqued dead zones - I. Static migration torque
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- Global simulations of self-gravitating magnetized protoplanetary disks
- An Ordered Magnetic Field in the Protoplanetary Disk of AB Aur Revealed by Mid-Infrared Polarimetry
- Self-organisation in protoplanetary disks: global, non-stratified Hall-MHD simulations
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- Structure Formation in a Young Protoplanetary Disk by a Magnetic Disk Wind
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- Low mass planet migration in magnetically torqued dead zones - II. Flow-locked and runaway migration, and a torque prescription
- Hall Effect in Protostellar Disc Formation and Evolution
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- The Maximum Mass Solar Nebula and the early formation of planets
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- Local simulations of MRI turbulence with meshless methods
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- Growth of Magnetorotational Instability in Circumstellar Disks around Class 0 Protostars
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- Viscous Instability Triggered by Layered Accretion in Protoplanetary Disks
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