Exploring the role of accretion disk geometry in shaping black hole shadows
arXiv:2506.21148 · doi:10.1103/fhqj-wgcm
Abstract
We study black hole imaging in the context of geometrically thick accretion disks in Schwarzschild spacetime. By decomposing the emitting region into a set of one-dimensional luminous segments, each characterized by its inclination angle and inner radius, we construct transfer functions that capture key image features-namely, the direct image, lensing ring, and photon ring. This approach allows a unified treatment of disk geometry and viewing angle. We explore three regimes: optically thin, optically thick, and partially optically thick disks. For optically thin flows, increasing the disk thickness (characterized by the half-opening angle ) broadens the lensing ring, gradually bridging the photon ring and the direct image. The photon ring remains narrow, but its position robustly defines the innermost edge of the lensing structure. In the optically thick case, image features are primarily determined by the first intersection of traced light rays with the disk, and we provide analytical criteria for the presence of lensing and photon rings based on the critical deflection angles. For partially optically thick disks, we adopt a simplified radiative transport model and find a critical absorption coefficient beyond which the image rapidly transitions from an optically thin- to thick-disk appearance. These results help clarify the respective roles of the photon and lensing rings across different disk configurations, and may offer a useful framework for interpreting future high-resolution black hole observations.
34 pages, 17 figures. Code available at https://github.com/ziliang-wang0/SHADOW-TD
References in corpus (19)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- First M87 Event Horizon Telescope Results. VI. The Shadow and Mass of the Central Black Hole
- Horizon-scale tests of gravity theories and fundamental physics from the Event Horizon Telescope image of Sagittarius A
- Black Hole Shadows, Photon Rings, and Lensing Rings
- The Shadow of a Spherically Accreting Black Hole
- Distortions of images of Schwarzschild lensing
- Quantum Schwarzschild geometry in effective-field-theory models of gravity
- Cosmological constant corrections to the photon sphere and black hole shadow radii
- Dynamical features and shadows of quantum Schwarzschild black hole in effective field theories of gravity
- The effect of scalar hair on the charged black hole with the images from accretions disk
- Geodesic structure, shadow and optical appearance of black hole immersed in Chaplygin-like dark fluid
- Shadows and rings of a de Sitter-Schwarzschild black hole
- Accretion flows around exotic tidal wormholes I. Ray-tracing
- Thermodynamics of high order correction for Schwarzschild-AdS black hole in non-commutative geometry
- Thermodynamics of deformed AdS-Schwarzschild black holes in the presence of Thermal fluctuations
- Thin Accretion Disk Around Rotating Hairy Black Hole: Radiative Property and Optical Appearance
- Trajectories of photons around a rotating black hole with unusual asymptotics
- Shadow of the Scalar Hairy Black Hole with Inverted Higgs Potential