Angular Momentum Transport by Acoustic Modes Generated in the Boundary Layer II: MHD Simulations
arXiv:1301.4573 · doi:10.1088/0004-637X/770/1/68
Abstract
We perform global unstratified 3D magnetohydrodynamic simulations of an astrophysical boundary layer (BL) -- an interface region between an accretion disk and a weakly magnetized accreting object such as a white dwarf -- with the goal of understanding the effects of magnetic field on the BL. We use cylindrical coordinates with an isothermal equation of state and investigate a number of initial field geometries including toroidal, vertical, and vertical with zero net flux. Our initial setup consists of a Keplerian disk attached to a non-rotating star. In a previous work, we found that in hydrodynamical simulations, sound waves excited by shear in the BL were able to efficiently transport angular momentum and drive mass accretion onto the star. Here we confirm that in MHD simulations, waves serve as an efficient means of angular momentum transport in the vicinity of the BL, despite the magnetorotational instability (MRI) operating in the disk. In particular, the angular momentum current due to waves is at times larger than the angular momentum current due to MRI. Our results suggest that angular momentum transport in the BL and its vicinity is a global phenomenon occurring through dissipation of waves and shocks. This point of view is quite different from the standard picture of transport by a local anomalous turbulent viscosity. In addition to angular momentum transport, we also study magnetic field amplification within the BL. We find that the field is indeed amplified in the BL, but only by a factor of a few and remains subthermal.
34 pages, 15 figures, submitted to ApJ
References in corpus (10)
- Athena: A New Code for Astrophysical MHD
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. II. The effect of transport coefficients
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. I. The issue of convergence
- Corotational Instability of Inertial-Acoustic Modes in Black Hole Accretion Discs and Quasi-Periodic Oscillations
- Turbulent Mixing in the Surface Layers of Accreting Neutron Stars
- Angular Momentum Transport by Acoustic Modes Generated in the Boundary Layer I: Hydrodynamical Theory and Simulations
- Supersonic Shear Instabilities in Astrophysical Boundary Layers
- Angular Momentum Transport and Variability in Boundary Layers of Accretion Disks Driven by Global Acoustic Modes
- A Weakly nonlinear theory for spiral density waves excited by accretion disc turbulence
- On Hydromagnetic Stresses in Accretion Disk Boundary Layers
Cited by in corpus (20)
- Red or blue? A potential kilonova imprint of the delay until black hole formation following a neutron star merger
- Magnetic and Gravitational Disk-Star Interactions: An Interdependence of PMS Stellar Rotation Rates and Spin-Orbit Misalignments
- Global MHD Simulations of Accretion Disks in Cataclysmic Variables (CVs): I. The Importance of Spiral Shocks
- Disk-fed giant planet formation
- High-Energy Neutrino Emission from White Dwarf Mergers
- Global MHD Simulations of Accretion Disks in Cataclysmic Variables (CVs): II The Relative Importance of MRI and Spiral Shocks
- A hot big bang theory: magnetic fields and the early evolution of the protolunar disk
- Spreading layers in accreting objects: role of acoustic waves for angular momentum transport, mixing and thermodynamics
- Boundary Layer Circumplanetary Accretion: How Fast Could an Unmagnetized Planet Spin Up Through Its Disk?
- Wave mediated angular momentum transport in astrophysical boundary layers
- Radial Transport and Meridional Circulation in Accretion Disks
- On the Terminal Spins of Accreting Stars and Planets: Boundary Layers
- Inefficient Angular Momentum Transport in Accretion Disk Boundary Layers: Angular Momentum Belt in the Boundary Layer
- Boundary Layers of Accretion Disks: Wave-Driven Transport and Disk Evolution
- Boundary Layers of Accretion Disks: Discovery of Vortex-Driven Modes and Other Waves
- The vertical structure of the boundary layer around compact objects
- Incompressible Modes Excited by Supersonic Shear in Boundary Layers: Acoustic CFS Instability
- Boundary Layers of Circumplanetary Disks around Spinning Planets I. Effects of Rossby Waves
- The spin-up of a star gaining mass in a close binary system on the thermal time scale
- Parallel tracks as quasi-steady states for the magnetic boundary layers in neutron-star low-mass X-ray binaries