No Evidence for Bardeen-Petterson Alignment in GRMHD Simulations and Semi-Analytic Models of Moderately Thin, Prograde, Tilted Accretion Disks
arXiv:1406.5515 · doi:10.1088/0004-637X/796/2/104
Abstract
In this paper we introduce the first results that use data extracted directly from numerical simulations as inputs to the analytic twisted disk model of Zhuravlev & Ivanov. In both numerical and analytic approaches, fully relativistic models of tilted and twisted disks having a moderate effective viscosity around a slowly rotating Kerr black hole are considered. Qualitatively, the analytic model demonstrates the same dynamics as the simulations, although with some quantitative offset. Namely, the GRMHD simulations generally give smaller variations of tilt and twist across the disk. When the black hole and the disk rotate in the same sense, the simulated tilted disk and analytic model show no sign of Bardeen-Petterson alignment, even in the innermost parts of the disk, where the characteristic time for relaxation to a quasi-stationary configuration is of the same order as the computation time. In the opposite case, when the direction of the disk's rotation is opposite to that of black hole, a partial alignment is observed, in agreement with previous theoretical estimates. Thus, both fully numerical and analytic schemes demonstrate that the Bardeen-Petterson effect may not be possible for the case of prograde rotation provided that disk's effective viscosity is sufficiently small. This may have implications in modeling of different astrophysical phenomena, such as disk spectra and jet orientation.
15 pages, 11 figures, accepted to Astrophysical Journal
References in corpus (6)
- Global General Relativistic MHD Simulation of a Tilted Black-Hole Accretion Disk
- Testing Accretion Disk Theory in Black Hole X-ray Binaries
- Warp diffusion in accretion discs: a numerical investigation
- Is the Bardeen-Petterson effect responsible for the warping and precession in NGC 4258?
- Conservative GRMHD Simulations of Moderately Thin, Tilted Accretion Disks
- Warp and eccentricity propagation in discs around black holes
Cited by in corpus (16)
- A quasi-periodic modulation of the iron line centroid energy in the black hole binary H 1743-322
- On the Bardeen-Petterson Effect in black hole accretion discs
- Magnetohydrodynamic Simulations of Active Galactic Nucleus Disks and Jets
- Electromagnetic Counterparts to Massive Black Hole Mergers
- Disc tearing: implications for black hole accretion and AGN variability
- The AGN fuelling/feedback cycle in nearby radio galaxies - I. ALMA observations and early results
- Generalised warped disk equations
- Conservative GRMHD Simulations of Moderately Thin, Tilted Accretion Disks
- Effect of geometrically thin discs on precessing, thick flows: Relevance to type-C QPOs
- Tidal Disruption Event Disks around Supermassive Black Holes: Disk Warp and Inclination Evolution
- Accretion disc viscosity: a limit on the anisotropy
- On the formation of a quasi-stationary twisted disc after a tidal disruption event
- Alignments Of Black Holes With Their Warped Accretion Disks And Episodic Lifetimes Of Active Galactic Nuclei
- Electron Heating in the Trans-Relativistic Perpendicular Shocks of Tilted Accretion Flows
- Shock-induced partial alignment in geometrically-thick tilted accretion disks around black holes
- Future Simulations of Tidal Disruption Events