Intrinsic electromagnetic variability in celestial objects containing rapidly spinning black holes
arXiv:1602.03242 · doi:10.3847/0004-637X/818/1/82
Abstract
Analytical studies have raised the concern that a mysterious expulsion of magnetic field lines by a rapidly-spinning black hole (dubbed the black hole Meissner effect) would shut down the Blandford-Znajek process and quench the jets of active galactic nuclei and microquasars. This effect is however not seen observationally or in numerical simulations. Previous attempts at reconciling the predictions with observations have proposed several mechanisms to evade the Meissner effect. In this paper, we identify a new evasion mechanism and discuss its observational significance. Specifically, we show that the breakdown of stationarity is sufficient to remove the expulsion of the magnetic field at all multipole orders, and that the associated temporal variation is likely turbulent due to the existence of efficient mechanisms for sharing energy across different modes. Such an intrinsic (as opposed to being driven externally by, e.g., changes in the accretion rate) variability of the electromagnetic field can produce the recorded linear correlation between microvariability amplitudes and mean fluxes, help create magnetic randomness and seed sheared magnetic loops in jets, and lead to a better theoretical fit to the X-ray microvariability power spectral density.
16 pages, 9 figures
References in corpus (12)
- The Spin of Supermassive Black Holes
- Optical Intra-day Variability in Blazars
- The jet-powered optical nebula of Cygnus X-1
- General Relativistic Magnetohydrodynamic Simulations of Blandford-Znajek Jets and the Membrane Paradigm
- Faraday rotation and polarization gradients in the jet of 3C~120: Interaction with the external medium and a helical magnetic field?
- Inverse cascade of non-helical magnetic turbulence in a relativistic fluid
- The dependence of quasar variability on black hole mass
- Evidence for Rapidly Spinning Black Holes in Quasars
- Exact Solutions to Force-Free Electrodynamics in Black Hole Backgrounds
- Lognormal variability in BL Lacertae
- Variability of Active Galactic Nuclei from the Optical to X-ray Regions
- The Black Hole Meissner Effect and Blandford-Znajek Jets