Thin accretion disk signatures of slowly rotating black holes in Hořava gravity
arXiv:1009.1958 · doi:10.1088/0264-9381/28/16/165001
Abstract
In the present work, we consider the possibility of observationally testing Hořava gravity by using the accretion disk properties around slowly rotating black holes of the Kehagias-Sfetsos solution in asymptotically flat spacetimes. The energy flux, temperature distribution, the emission spectrum as well as the energy conversion efficiency are obtained, and compared to the standard slowly rotating general relativistic Kerr solution. Comparing the mass accretion in a slowly rotating Kehagias-Sfetsos geometry in Hořava gravity with the one of a slowly rotating Kerr black hole, we verify that the intensity of the flux emerging from the disk surface is greater for the slowly rotating Kehagias-Sfetsos solution than for rotating black holes with the same geometrical mass and accretion rate. We also present the conversion efficiency of the accreting mass into radiation, and show that the rotating Kehagias-Sfetsos solution provides a much more efficient engine for the transformation of the accreting mass into radiation than the Kerr black holes. Thus, distinct signatures appear in the electromagnetic spectrum, leading to the possibility of directly testing Hořava gravity models by using astrophysical observations of the emission spectra from accretion disks.
12 pages, 15 figures. V2: 13 pages, clarifications and discussion added; version accepted for publication in Classical and Quantum Gravity
References in corpus (32)
- Quantum Gravity at a Lifshitz Point
- Spectral Dimension of the Universe in Quantum Gravity at a Lifshitz Point
- Membranes at Quantum Criticality
- Horava-Lifshitz Cosmology
- Strong coupling in Horava gravity
- Solutions to Horava Gravity
- On the Extra Mode and Inconsistency of Horava Gravity
- Chiral Primordial Gravitational Waves from a Lifshitz Point
- Phenomenologically viable Lorentz-violating quantum gravity
- Lorentz symmetry breaking as a quantum field theory regulator
- Cosmology of the Lifshitz universe
- Thin accretion disks in stationary axisymmetric wormhole spacetimes
- Strong field gravitational lensing in the deformed Hǒrava-Lifshitz black hole
- Electromagnetic signatures of thin accretion disks in wormhole geometries
- Thin accretion disks in f(R) modified gravity models
- On the z=4 Horava-Lifshitz Gravity
- Non-singular cosmology in a model of non-relativistic gravity
- Towards constraining of the Horava-Lifshitz gravities
- Can accretion disk properties distinguish gravastars from black holes?
- Renormalization group in Lifshitz-type theories
- Testing Hořava-Lifshitz gravity using thin accretion disk properties
- Thermodynamics and classification of cosmological models in the Horava-Lifshitz theory of gravity
- Dynamical Scalar Degree of Freedom in Horava-Lifshitz Gravity
- Cuscuton and low energy limit of Horava-Lifshitz gravity
- On the Renormalizability of Horava-Lifshitz-type Gravities
- Thin accretion disks onto brane world black holes
- Accretion disk onto boson stars: a way to supplant black holes candidates
- Caustic avoidance in Horava-Lifshitz gravity
- Dyonic solution of Horava-Lifshitz Gravity
- Anisotropic Cosmology and (Super)Stiff Matter in Hořava's Gravity Theory
- Is nonrelativistic gravity possible?
- Slowly rotating black holes in the Horava-Lifshitz gravity
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- Thin Accretion Disk onto slowly rotating black holes in Einstein-Æther theory
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- Black hole solutions in the quadratic Weyl conformal geometric theory of gravity
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- Thin accretion disks around cold Bose-Einstein Condensate stars
- Circular orbits and thin accretion disk around a quantum corrected black hole
- Shadows and photon rings of a spherically accreting Kehagias-Sfetsos black hole
- Static spherically symmetric three-form stars
- Curved accretion disks around rotating black holes without reflection symmetry
- Thin accretion disk signatures in hybrid metric-Palatini gravity
- Black hole solutions in modified gravity induced by quantum metric fluctuations
- Testing Gravity with Black Hole X-Ray Data
- Radiative properties of thin accretion disks around rotating short-hairy black holes
- Shadow geometry of Kerr MOG naked singularity and analysis of accretion disk luminosity
- Relativistic Accretion Flow in a Generic Class of Spherically Symmetric Static Spacetime