Kerr-MOG-(A)dS black hole and its shadow in scalar-tensor-vector gravity theory
arXiv:2406.00579 · doi:10.1088/1475-7516/2024/08/035
Abstract
The scalar-tensor-vector gravity (STVG) theory has attracted significant interest due to its ability to effectively address the issue of galaxy rotation curves and clusters of galaxies without considering the influence of dark matter. In this paper, we construct rotating black hole solutions with a cosmological constant in the STVG theory (i.e., Kerr-MOG-(A)dS black hole solutions), where the import of a gravitational charge as a source modifies the gravitational constant, determined by . For Kerr-MOG-dS spacetime, the observer is situated at a specific location within the domain of outer communication, rather than being located infinitely far away. Since black hole shadows are shaped by light propagation in spacetime, the interaction between the MOG parameter and the cosmological constant is expected to produce novel effects on these shadows. As the cosmological constant increases, the apparent size of the black hole shadow decreases. Additionally, the shadow expands with an increase in the MOG parameter , reaching a maximum at a certain value, and its shape becomes more rounded under an arbitrary rotation parameter, which leads to degeneracy between different black hole parameters. However, by employing numerical ray-tracing techniques, we have found that gravitational lensing and the frame-dragging effect effectively distinguish this degeneracy. Our work contributes to a deeper understanding of black holes in modified gravity, their observational signatures, and constraints.
13 pages, 32 figures
References in corpus (29)
- 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 Sagittarius A* Event Horizon Telescope Results. VI: Testing the Black Hole Metric
- Measurement of the Kerr Spin Parameter by Observation of a Compact Object's Shadow
- A new method for shadow calculations: application to parameterised axisymmetric black holes
- Black Holes in Modified Gravity (MOG)
- Black Hole Solutions as Topological Thermodynamic Defects
- Modified Gravity Black Holes and their Observable Shadows
- Incidences between points and lines on a two-dimensional variety
- Topological classes of thermodynamics of rotating AdS black holes
- QED Effect on Black Hole Shadow
- Topological classes of rotating black holes
- Rotational Velocity Curves in the Milky Way as a Test of Modified Gravity
- Classifying topology of consistent thermodynamics of the four-dimensional neutral Lorentzian NUT-charged spacetimes
- QNMs of slowly rotating Einstein-Bumblebee Black Hole
- Analytical study of gravitational lensing in Kerr-Newman black-bounce spacetime
- Topological classes of thermodynamics of the static multi-charge AdS black holes in gauged supergravities: novel temperature-dependent thermodynamic topological phase transition
- Static neutral black holes in Kalb-Ramond gravity
- Direct detection of dark photon dark matter using radio telescopes
- A review on analytical studies in Gravitational Lensing
- Kerr-Schild spacetimes with (A)dS background
- Image of Bonnor black dihole with a thin accretion disk and its polarization information
- Lorentz violation induces isospectrality breaking in Einstein-Bumblebee gravity theory
- Structure Growth and the CMB in Modified Gravity (MOG)
- Gravito-electromagnetic perturbations of MOG black holes with a cosmological constant: Quasinormal modes and Ringdown waveforms
- Blandford-Znajek jets in MOdified Gravity
- The cosmological background and the "external field" in Modified Gravity (MOG)
- Hamiltonian Formalism for dynamics of particles in MOG
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- Static neutral black holes in Kalb-Ramond gravity
- Event Horizon Telescope observations exclude compact objects in baseline mimetic gravity
- Universal thermodynamic topological classes of rotating black holes
- Primordial regular black holes as all the dark matter. II. Non-time-radial-symmetric and loop quantum gravity-inspired metrics
- Primordial regular black holes as all the dark matter. I. Time-radial-symmetric metrics
- Shadow of slowly rotating Kalb-Ramond black holes
- Harvesting correlations from BTZ black hole coupled to a Lorentz-violating vector field
- Null geodesics, causal structure, and matter accretion in Lorentzian-Euclidean black holes
- Light rings and shadows of static black holes in effective quantum gravity II: A new solution without Cauchy horizons
- Periodic orbits and their gravitational wave radiations around the Schwarzschild-MOG black hole
- Thermodynamic topological classes of the rotating, accelerating black holes
- Shadows and parameter estimation of rotating quantum corrected black holes and constraints from EHT observation of M87* and Sgr A*
- Primordial regular black holes as all the dark matter. III. Covariant canonical quantum gravity models
- Black hole photon ring beyond General Relativity: an integrable parametrization
- Optical Signatures of Einstein-Euler-Heisenberg AdS/dS Black Holes in the light of Event Horizon Telescope
- Observational properties of black hole in quantum fluctuation modified gravity
- Shadows for Kerr-Sen-Taub-NUT black holes with Manko-Ruiz parameter
- Shadows of naked singularities and superspinars related to the revisited Kerr-de Sitter spacetimes