The Nature of Black Hole Shadows
arXiv:2108.03966 · doi:10.3847/1538-4357/ac1738
Abstract
A distinct visual signature occurs in black holes that are surrounded by optically thin and geometrically thick emission regions. This signature is a sharp-edged dip in brightness that is coincident with the black-hole shadow, which is the projection of the black hole's unstable-photon region on the observer's sky. We highlight two key mechanisms responsible for producing the sharp-edged dip: i) the reduction of intensity observed in rays that intersect the unstable-photon region, and thus the perfectly absorbing event horizon, versus rays that do not (blocking), and ii) the increase of intensity observed in rays that travel along extended, horizon-circling paths near the boundary of the unstable-photon region (path-lengthening). We demonstrate that the black-hole shadow is a distinct phenomenon from the photon ring, and that models exist in which the former may be observed, but not the latter. Additionally, we show that the black-hole shadow and its associated visual signature differ from the more model-dependent brightness depressions associated with thin-disk models, because for geometrically thick and optically thin emission regions, the blocking and path-lengthening effects are quite general. Consequentially, the black-hole shadow is a robust and fairly model-independent observable for accreting black holes that are in the deep sub-Eddington regime, such as low-luminosity active galactic nuclei (LLAGN).
15 pages, 12 figures, accepted for publication in ApJ (22 July 2021)
References in corpus (13)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First M87 Event Horizon Telescope Results. VI. The Shadow and Mass of the Central Black Hole
- First M87 Event Horizon Telescope Results. II. Array and Instrumentation
- Black Hole Shadows, Photon Rings, and Lensing Rings
- Gravitational Test Beyond the First Post-Newtonian Order with the Shadow of the M87 Black Hole
- A new method for shadow calculations: application to parameterised axisymmetric black holes
- The Shadow of a Spherically Accreting Black Hole
- Observing the Inner Shadow of a Black Hole: A Direct View of the Event Horizon
- Chaotic lensing around boson stars and Kerr black holes with scalar hair
- Simulating the Emission and Outflows from Accretion Disks
- Monitoring the Morphology of M87* in 2009-2017 with the Event Horizon Telescope
- Visibility of Black Hole Shadows in Low-luminosity AGN
- Testing General Relativity with High-Resolution Imaging of Sgr A*