On the time variability of geometrically-thin black hole accretion disks I : the search for modes in simulated disks
arXiv:0805.2950 · doi:10.1088/0004-637X/692/1/869
Abstract
We present a detailed temporal analysis of a set of hydrodynamic and magnetohydrodynamic (MHD) simulations of geometrically-thin (h/r~0.05) black hole accretion disks. The black hole potential is approximated by the Paczynski-Wiita pseudo-Newtonian potential. In particular, we use our simulations to critically assess two widely discussed models for high-frequency quasi-periodic oscillations, global oscillation modes (diskoseismology) and parametric resonance instabilities. We find that initially disturbed hydrodynamic disks clearly display the trapped global g-mode oscillation predicted by linear perturbation theory. In contrast, the sustained turbulence produced in the simulated MHD disks by the magneto-rotational instability does not excite these trapped g-modes. We cannot say at present whether the MHD turbulence actively damps the hydrodynamic g-mode. Our simulated MHD disks also fail to display any indications of a parametric resonance instability between the vertical and radial epicyclic frequencies. On the other hand, we do see characteristic frequencies at any given radius in the disk corresponding to local acoustic waves. We also conduct a blind search for any quasi-periodic oscillation in a proxy lightcurve based on the instantaneous mass accretion rate of the black hole, and place an upper limit of 2% on the total power in any such feature. We highlight the importance of correcting for secular changes in the simulated accretion disk when performing temporal analyses.
20 pages, 15 figures. Accepted for publication in The Astrophysical Journal. High resolution version available at http://www.astro.umd.edu/~chris/publications/papers/disk_modes_hires.pdf
References in corpus (8)
- Active Galactic Nuclei as scaled-up Galactic black holes
- Hydrodynamic turbulence cannot transport angular momentum effectively in astrophysical disks
- Broad iron K-alpha emission lines as a diagnostic of black hole spin
- Three-Dimensional Simulations of Magnetized Thin Accretion Disks around Black Holes: Stress in the Plunging Region
- Light Curves from an MHD Simulation of a Black Hole Accretion Disk
- Quasi-Periodic Oscillations from Magnetorotational Turbulence
- Relativistic Diskoseismology. III. Low-Frequency Fundamental p-Modes
- Spectral Methods for Time-Dependent Studies of Accretion Flows. II. Two-Dimensional Hydrodynamic Disks with Self-Gravity
Cited by in corpus (69)
- General Relativistic Magnetohydrodynamic Simulations of Magnetically Choked Accretion Flows around Black Holes
- Foundations of Black Hole Accretion Disk Theory
- The Event Horizon General Relativistic Magnetohydrodynamic Code Comparison Project
- Three-Dimensional General Relativistic Radiation Magnetohydrodynamical Simulation of Super-Eddington Accretion, using a new code HARMRAD with M1 Closure
- Observational Constraints on Black Hole Spin
- Stellar-mass Black Hole Spin Constraints from Disk Reflection and Continuum Modeling
- Kepler Observations of Rapid Optical Variability in Active Galactic Nuclei
- A physical model for the continuum variability and QPO in accreting black holes
- The Masses and Spins of Neutron Stars and Stellar-Mass Black Holes
- A Stochastic Model for the Luminosity Fluctuations of Accreting Black Holes
- The Origin of Black Hole Spin in Galactic Low-Mass X-ray Binaries
- Testing the No-Hair Theorem with Observations in the Electromagnetic Spectrum. III. Quasi-Periodic Variability
- Confronting the models of 3:2 quasiperiodic oscillations with the rapid spin of the microquasar GRS 1915+105
- The Kepler Light Curves of AGN: A Detailed Analysis
- Warps, bending and density waves excited by rotating magnetized stars: results of global 3D MHD simulations
- Fast variability from black-hole binaries
- Low-Frequency Oscillations in Global Simulations of Black Hole Accretion
- Testing the Propagating Fluctuations Model with a Long, Global Accretion Disk Simulation
- A Bayesian Method for the Intercalibration of Spectra in Reverberation Mapping
- Mass-ratio and Magnetic Flux-Dependence of Modulated Accretion from Circumbinary Disks
- Extracting Information from AGN Variability
- MHD Simulations of Accretion onto Sgr A*: Quiescent Fluctuations, Outbursts, and Quasi-Periodicity
- Connections Between Local and Global Turbulence in Accretion Disks
- Effects of Magnetic Fields on the Diskoseismic Modes of Accreting Black Holes
- Near-Infrared and X-ray Quasi-Periodic Oscillations in Numerical Models of Sgr A*
- Confrontation of Observation and Theory: High Frequency QPOs in X-ray Binaries, Tidal Disruption Events, and Active Galactic Nuclei
- GRMHD prediction of coronal variability in accreting black holes
- Mass of intermediate black hole in the source M82 X-1 restricted by models of twin high-frequency quasi-periodic oscillations
- Diskoseismology and QPOs Confront Black Hole Spin
- Three-dimensional, global, radiative GRMHD simulations of a thermally unstable disc
- Spectral hardening as a viable alternative to disc truncation in black hole state transitions
- Short time-scale optical variability properties of the largest AGN sample observed with Kepler/K2
- On twin peak quasi-periodic oscillations resulting from the interaction between discoseismic modes and turbulence in accretion discs around black holes
- Corotational Instability, Magnetic Resonances and Global Inertial-Acoustic Oscillations in Magnetized Black-Hole Accretion Discs
- A forward modelling approach to AGN variability -- Method description and early applications
- A timing-based estimate of the spin of the black hole in MAXI J1820+070
- Corotational Instability of Inertial-Acoustic Modes in Black-Hole Accretion Discs: Non-Barotropic Flows
- Excitation of Trapped Waves in Simulations of Tilted Black Hole Accretion Disks with Magnetorotational Turbulence
- A model of the steep power law spectra and high-frequency quasi-periodic oscillations in luminous black hole X-ray binaries
- The Dynamics of Truncated Black Hole Accretion Disks II: Magnetohydrodynamic Case
- Looking for the underlying cause of black hole X-ray variability in GRMHD simulations
- HFQPOs and discoseismic mode excitation in eccentric, relativistic discs. II. Magnetohydrodynamic simulations
- Disc-oscillation resonance and neutron star QPOs: 3:2 epicyclic orbital model
- Inertial waves near corotation in 3D hydrodynamical disks
- Dynamics of the Innermost Accretion Flows Around Compact Objects: Magnetosphere-Disc Interface, Global Oscillations and Instabilities
- HFQPOs and discoseismic mode excitation in eccentric, relativistic discs. I. Hydrodynamic simulations
- Breathing Oscillations in a Global Simulation of a Thin Accretion Disk
- Relativistic, Viscous, Radiation Hydrodynamic Simulations of Geometrically Thin Disks. II. Disk Variability
- KSwAGS: A Swift X-ray and UV Survey of the Kepler Field. I
- Oscillations of the Inner Regions of Viscous Accretion Disks
- Viscous Driving of Global Oscillations in Accretion Discs Around Black Holes
- A new timescale-mass scaling for the optical variation of active galactic nuclei across the intermediate-mass to supermassive scales
- Quasi-periodic oscillations and the global modes of relativistic, MHD accretion discs
- Quasi-periodic oscillations, trapped inertial waves and strong toroidal magnetic fields in relativistic accretion discs
- High-Frequency QPOs and Overstable Oscillations of Black-Hole Accretion Disks
- Corotation resonance and overstable oscillations in black-hole accretion discs: general-relativistic calculations
- Spherical accretion: the influence of inner boundary and quasi-periodic oscillations
- The 2:3:6 QPO structure in GRS 1915+105 and cubic subharmonics in the context of relativistic diskoseismology
- Simulations of Overstable Inertial-acoustic Modes in Black-Hole Accretion Discs
- A new 2D stochastic methodology for simulating variable accretion discs: propagating fluctuations and epicyclic motion
- A non-linear mathematical model for the X-ray variability classes of the microquasar GRS 1915+105 -- I: quiescent, spiking states and QPOs
- Non-exponential hydrodynamical growth in density-stratified thin Keplerian discs
- Do Magnetic Fields Destroy Black Hole Accretion Disk g-Modes?
- Why haven't the observed high-frequency QPOs been produced by (MHD) computer simulations of black hole accretion disks?
- High frequency breaks in optical active galactic nuclei power spectral density
- A QPO in NGC 4945 from Archival RXTE Data
- Spectra and Structure of Accretion Disks with Nonzero Inner Torque
- Tilted Accretion Disks
- Evolution of a Mode of Oscillation Within Turbulent Accretion Disks