Do jets precess... or even move at all?
arXiv:1301.5321 · doi:10.1088/2041-8205/765/1/L7
Abstract
Observations of accreting black holes often provoke suggestions that their jets precess. The precession is usually supposed to result from a combination of the Lense-Thirring effect and accretion disc viscosity. We show that this is unlikely for any type of black hole system, as the disc generally has too little angular momentum compared with a spinning hole to cause any significant movement of the jet direction across the sky on short timescales. Uncorrelated accretion events, as in the chaotic accretion picture of active galactic nuclei, change AGN jet directions only on timescales \gtrsim 10^7 yr. In this picture AGN jet directions are stable on shorter timescales, but uncorrelated with any structure of the host galaxy, as observed. We argue that observations of black-hole jets precessing on timescales short compared to the accretion time would be a strong indication that the accretion disc, and not the standard Blandford-Znajek mechanism, is responsible for driving the jet. This would be particularly convincing in a tidal disruption event. We suggest that additional disc physics is needed to explain any jet precession on timescales short compared with the accretion time. Possibilities include the radiation warping instability, or disc tearing.
4 pages. Accepted for publication in ApJ Letters
References in corpus (7)
- Accretion disc viscosity: how big is alpha?
- Global General Relativistic MHD Simulation of a Tilted Black-Hole Accretion Disk
- The Evolution of Black Hole Mass and Spin in Active Galactic Nuclei
- The Nature of SS433 and the Ultraluminous X-ray Sources
- Fuelling Active Galactic Nuclei
- Tearing up the disc: how black holes accrete
- The evolution of misaligned accretion discs and spinning black holes
Cited by in corpus (33)
- A new population of ultra-long duration gamma-ray bursts
- AGN jet feedback on a moving mesh: cocoon inflation, gas flows and turbulence
- A unified Lense-Thirring precession model for optical and X-ray quasi-periodic oscillations in black hole binaries
- Detection of the first infra-red quasi periodic oscillation in a black hole X-ray binary
- A precessing molecular jet signaling an obscured, growing supermassive black hole in NGC1377?
- Duty cycle of the radio galaxy B2 0258+35
- AGN jet feedback on a moving mesh: gentle cluster heating by weak shocks and lobe disruption
- A physical model for state transitions in black hole X-ray binaries
- Black hole triggered star formation in the dwarf galaxy Henize 2-10
- VLBA Observations of Mrk 6: Probing the Jet-Lobe Connection
- Recent Progress in Modeling the Macro- and Micro-Physics of Radio Jet Feedback in Galaxy Clusters
- Are Fast Radio Bursts Made By Neutron Stars?
- Restarting activity in the nucleus of PBC J2333.9-2343: an extreme case of jet realignment
- Warp propagation in astrophysical discs
- Self-regulated AGN feedback of light jets in cool-core galaxy clusters
- HLX-1 may be an SS433 system
- Young AGN outburst running over older X-ray cavities
- Jet-Intracluster Medium interaction in Hydra A. II The Effect of Jet Precession
- Variability studies and modeling of the blazar PKS 2155-304 in the light of a decade of multi-wavelength observations
- Parsec-scale jet properties of the quasar PG 1302102
- On the dynamics of low-viscosity warped discs around black holes
- Kepler light curve analysis of the blazar W2R 1926+42
- Intra-night variability of the blazar CTA 102 during its 2012 and 2016 giant outbursts
- A new feedback cycle in the archetypal cooling flow group NGC 5044
- The properties of magnetised cold filaments in a cool-core galaxy cluster
- Misaligned magnetized accretion flows onto spinning black holes: Magneto-spin alignment, outflow power, and intermittent jets
- The hot dust in the heart of NGC 1068's torus: A 3D radiative model constrained with GRAVITY/VLTi
- SMBH accretion & mergers: removing the symmetries
- Complex morphology and precession indicators of AGN jets in LoTSS DR2
- Effects of precession versus instabilities on the jets of GRS 1758-258
- Estimation of the jet inclination angle for the TDE Swift J1644+57
- A Simple Condition for Sustained Super-Eddington Black Hole Growth
- Unveiling the Complex Jet Dynamics in the Blazar 2021+317 through Multi-Epoch VLBI Observations