Geodesic structure, shadow and optical appearance of black hole immersed in Chaplygin-like dark fluid
arXiv:2401.18066 · doi:10.1088/1475-7516/2024/05/048
Abstract
In this study, we focus on a black hole immersed in a cosmological Chaplygin-like dark fluid (CDF), characterized by the equation of state and an additional parameter influencing the energy density of the fluid. We investigate the geodesic structure, shadow, and optical appearance of such a black hole. Through analysis on the effective potential and the epicyclic frequencies, it is found that the existence of innermost/outermost stable circular orbits for a timelike particle is governed by the CDF parameters. The behaviors of the orbital conserved quantities and Keplerian frequency are also examined. Due to the existence of pseudo-cosmological horizon, the determination of the shadow radius depends significantly on the position of the observer. By placing the static observer at an approximately flat position between the event and pseudo-cosmological horizons, we constrain the CDF parameters using EHT observations. We investigate the effect of CDF on the shadows and optical images of the black hole, surrounded by various profiles of accretions. For the thin disk accretion, the light trajectories are categorized into direct emission, lensing ring, and photon ring based on impact parameters. Due to the existence of outermost stable circular orbits, outer edges could exist in the direct and lensing ring images. The observed brightness is mainly due to direct emission, with a minor contribution from the lensing ring, while the contribution from the photon ring is negligible due to extreme demagnetization. In the case of spherical accretion, we consider both static and infalling accretion models. The images obtained under infalling accretion are slightly darker than those under static accretion, attributed to the Doppler effect. Throughout the study, we analyze the influence of the parameters and on the results.
35 pages, 15 figures. Discussions added
References in corpus (34)
- 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
- 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
- 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
- Applications of the Gauss-Bonnet theorem to gravitational lensing
- Magnetically charged black holes from non-linear electrodynamics and the Event Horizon Telescope
- Gravitational Lensing by Rotating Wormholes
- The Shadow of a Spherically Accreting Black Hole
- Lensing by Kerr Black Holes
- Shadows of Sgr A Black Hole Surrounded by Superfluid Dark Matter Halo
- Shadows of boson and Proca stars with thin accretion disks
- Shadow and stability of quantum-corrected black holes
- Shadows and rings of the Kehagias-Sfetsos black hole surrounded by thin disk accretion
- Shadow cast by a rotating charged black hole in quintessential dark energy
- Influence of Accretion Flow and Magnetic Charge on the Observed Shadows and Rings of the Hayward Black Hole
- The shadow and photon sphere of the charged black hole in Rastall gravity
- Constraints on charged Symmergent black hole from shadow and lensing
- Distinguishing gravitational and emission physics in black-hole imaging: spherical symmetry
- Shadow and deflection angle of asymptotic, magnetically-charged, non-singular black hole
- Observable characteristics of the charged black hole surrounded by thin disk accretion in Rastall gravity
- Observational signature of a near-extremal Kerr-Sen black hole in the heterotic string theory
- Phase structure of charged AdS black holes surrounded by exotic fluid with modified Chaplygin equation of state
- Shadows of Kerr black holes with a Gaussian-distributed plasma in the polar direction
- Critical behavior of AdS black holes surrounded by dark fluid with Chaplygin-like equation of state
- Influence of accretion disk on the optical appearance of the Kazakov-Solodukhin black hole
- Shadows and photon rings of a spherically accreting Kehagias-Sfetsos black hole
- Shadow of Schwarzschild Black Hole in the Cold Dark Matter Halo
- Shadows and rings of a de Sitter-Schwarzschild black hole
- Effect of quintessence dark energy on the shadow of Hayward black holes with spherical accretion
Cited by in corpus (8)
- Analyzing the Influence of Geometrical Deformation on Photon Sphere and Shadow Radius: A New Analytical Approach -- Spherically Symmetric Spacetimes
- Shadows and parameter estimation of rotating quantum corrected black holes and constraints from EHT observation of M87* and Sgr A*
- Herrera Complexity and Shadows of Spherically Symmetric Compact Objects
- Quantum Corrected Geodesic Motion in Polymer Kerr-like Spacetime
- Dark energy effects on realistic neutron stars
- Shadows and Observational Images of a Schwarzschild-like Black Hole Surrounded by a Dehnen-type Dark Matter Halo
- Exploring the role of accretion disk geometry in shaping black hole shadows
- Causal structure of black holes immersed in a Chaplygin-like dark fluid environment: Horizons and singularities