Variability from Nonaxisymmetric Fluctuations Interacting with Standing Shocks in Tilted Black Hole Accretion Disks
arXiv:1211.2273 · doi:10.1088/0004-637X/760/1/1
Abstract
We study the spatial and temporal behavior of fluid in fully three-dimensional, general relativistic, magnetohydrodynamical simulations of both tilted and untilted black hole accretion flows. We uncover characteristically greater variability in tilted simulations at frequencies similar to those predicted by the formalism of trapped modes, but ultimately conclude that its spatial structure is inconsistent with a modal interpretation. We find instead that previously identified, transient, over-dense clumps orbiting on roughly Keplerian trajectories appear generically in our global simulations, independent of tilt. Associated with these fluctuations are acoustic spiral waves interior to the orbits of the clumps. We show that the two nonaxisymmetric standing shock structures that exist in the inner regions of these tilted flows effectively amplify the variability caused by these spiral waves to markedly higher levels than in untilted flows, which lack standing shocks. Our identification of clumps, spirals, and spiral-shock interactions in these fully general relativistic, magnetohydrodynamical simulations suggests that these features may be important dynamical elements in models which incorporate tilt as a way to explain the observed variability in black hole accretion flows.
accepted in ApJ October 1, 2012
References in corpus (11)
- The strongest cosmic magnets: Soft Gamma-ray Repeaters and Anomalous X-ray Pulsars
- Accurate evolutions of inspiralling neutron-star binaries: prompt and delayed collapse to black hole
- Recoil velocities from equal-mass binary black-hole mergers: a systematic investigation of spin-orbit aligned configurations
- Accurate evolutions of inspiralling and magnetized neutron-stars: equal-mass binaries
- WhiskyMHD: a new numerical code for general relativistic magnetohydrodynamics
- Can magnetic fields be detected during the inspiral of binary neutron stars?
- Maximum gravitational-wave energy emissible in magnetar flares
- Hydromagnetic Instabilities in Neutron Stars
- The stability of poloidal magnetic fields in rotating stars
- Evolution of neutron stars with toroidal magnetic fields: Axisymmetric simulation in full general relativity
- Magnetars versus Radio Pulsars: MHD Stability in Newborn Highly Magnetized Neutron Stars