Optical appearance of Einstein-Æther black hole surrounded by thin disk
arXiv:2205.13174 · doi:10.1016/j.nuclphysb.2022.116026
Abstract
In Einstein-Æther theory, the Lorentz symmetry is locally broken in the high-energy regime due to the presence of theÆther field. This shall leave significant imprint on astronomical observation. In this paper, we investigate the optical appearance of two types of the static and spherically symmetric black holes in Einstein-Æther theory. Via Euler-Lagrange equation, we obtain the equations of motion of the photon and calculate the total deflection angle of the photon trajectory around the black hole. By classifying the light rays with the total number of orbits, we study the effects of coupling constants on the direct image, lensing ring, and photon ring. The features of the light trajectories are also investigated by comparing with the Einstein-Æther theory and general relativity. Moreover, we also show the explicit optical appearance of black holes surrounded by thin disk emissions with three characteristic emitted models. The results indicate that the direct image gives the main contribution to the total flux, and the lensing ring just gives a very small contribution, whereas the role of the photon ring is negligible. The optical appearances are also found to significantly rely on these coupling constants.
19 pages, 6 figures
References in corpus (35)
- 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. IV. Imaging the Central Supermassive Black Hole
- First M87 Event Horizon Telescope Results. V. Physical Origin of the Asymmetric Ring
- First M87 Event Horizon Telescope Results. II. Array and Instrumentation
- First M87 Event Horizon Telescope Results. III. Data Processing and Calibration
- Black Hole Shadows, Photon Rings, and Lensing Rings
- Measurement of the Kerr Spin Parameter by Observation of a Compact Object's Shadow
- Apparent shape of super-spinning black holes
- Black holes in Einstein-aether and Horava-Lifshitz gravity
- The Shadow of a Spherically Accreting Black Hole
- Observing the Inner Shadow of a Black Hole: A Direct View of the Event Horizon
- Photon Ring and Observational Appearance of a Hairy Black Hole
- Influence of Quantum Correction on the Black Hole Shadows, Photon Rings and Lensing Rings
- Photon Spheres and Spherical Accretion Image of a Hairy Black Hole
- Imprints of Dark Matter on Black Hole Shadows using Spherical Accretions
- The shadows and observational appearance of a noncommutative black hole surrounded by various profiles of accretions
- Dark matter effect on the weak deflection angle by black holes at the center of Milky Way and M87 galaxies
- Einstein-Æther Gravity in the light of Event Horizon Telescope Observations of M87*
- Shadows and rings of the Kehagias-Sfetsos black hole surrounded by thin disk accretion
- Gravitational spectrum of black holes in the Einstein-Aether theory
- Towards thermodynamics of universal horizons in Einstein-æther theory
- Influence of Accretion Flow and Magnetic Charge on the Observed Shadows and Rings of the Hayward Black Hole
- Analytical study of higher-order ring images of accretion disk around black hole
- Image of a regular phantom compact object and its luminosity under spherical accretions
- Distorted Local Shadows
- Rotating black holes in Einstein-aether theory
- Observational signature of a near-extremal Kerr-Sen black hole in the heterotic string theory
- Photon sphere and shadow of a time-dependent black hole described by a Vaidya metric
- Dynamics of magnetized particles around Einstein-Æther black hole with uniform magnetic field
- NUT charges and black hole shadows
- Overcharging Extremal Black Holes
- Odd-parity stability of black holes in Einstein-Aether gravity
- Shadow and weak deflection angle of a black hole in nonlocal gravity
- Thermodynamics of Einstein-Aether Black Holes
Cited by in corpus (24)
- QED and accretion flow models effect on optical appearance of Euler-Heisenberg black holes
- Rings and images of Horndeski hairy black hole illuminated by various thin accretions
- Images from disk and spherical accretions of hairy Schwarzschild black holes
- Geodesics structure and deflection angle of electrically charged black holes in gravity with a background Kalb-Ramond field
- The effect of scalar hair on the charged black hole with the images from accretions disk
- Image of the Kerr-Newman black hole surrounded by a thin accretion disk
- Shadows and photon rings of a spherically accreting Kehagias-Sfetsos black hole
- Shadows and optical appearance of quantum-corrected black holes illuminated by static thin accretions
- Observational Appearance of a Freely-falling Star in an Asymmetric Thin-shell Wormhole
- Shadows and accretion disk images of charged rotating black hole in modified gravity theory
- Observational signatures of a static black hole with thin accretion disk
- Shadows and rings of a de Sitter-Schwarzschild black hole
- Shadow Thermodynamics of AdS Black Hole with the Nonlinear Electrodynamics Term
- Accretion disc around black hole in Einstein- non-linear sigma model
- Distinguishing black holes with and without spontaneous scalarization in Einstein-scalar-Gauss-Bonnet theories via optical features
- Optical Appearance and Shadow of Kalb-Ramond Black Hole: Effects of Plasma and Accretion Models
- Remarks on the light ring images and the optical appearance of hairy black holes in Einstein-Maxwell-dilaton gravity
- Accurate analytical modeling of light rays in spherically symmetric spacetimes: Applications in the study of black hole accretion disks and polarimetry
- Buchdahl bound, photon ring, ISCO and radial acceleration in Einstein-æther theory
- Accretion of matter of a new bumblebee black hole
- Screen chaotic motion by Shannon entropy in curved spacetimes
- Exploring black holes with multiple photon spheres by interferometric signatures
- Image of a quantum-corrected black hole without Cauchy horizons illuminated by a static thin accretion disk
- Black hole solutions with a linear equation of state in Hořava gravity and Einstein--æther theory