Spherical Accretion of Matter by Charged Black Holes on f(T) Gravity
arXiv:1606.04918 · doi:10.1007/s10509-018-3262-9
Abstract
We studied the spherical accretion of matter by charged black holes on Gravity. Considering the accretion model of a isentropic perfect fluid we obtain the general form of the Hamiltonian and the dynamic system for the fluid. We have analysed the movements of an isothermal fluid model with and where is the pressure and the total energy density. The analysis of the cases shows the possibility of spherical accretion of fluid by black holes, revealing new phenomena as cyclical movement inside the event horizon.
12 pages, revtex4 format. arXiv admin note: text overlap with arXiv:1503.07427, arXiv:1503.07857, arXiv:1509.03267, arXiv:1501.00621
References in corpus (42)
- f(R,T) gravity
- Dark Energy and the Accelerating Universe
- Modified teleparallel gravity: inflation without inflaton
- Dark energy in modified Gauss-Bonnet gravity: late-time acceleration and the hierarchy problem
- The teleparallel equivalent of general relativity
- Cosmological perturbations in f(T) gravity
- Construction of cosmologically viable f(G) gravity models
- f(T) gravity mimicking dynamical dark energy. Background and perturbation analysis
- gravity and cosmology
- Teleparallel equivalent of Gauss-Bonnet gravity and its modifications
- Generalizations of teleparallel gravity and local Lorentz symmetry
- Good and bad tetrads in f(T) gravity
- Solar system constraints on f(T) gravity
- models with phantom divide line crossing
- Degrees of freedom of gravity
- Growth factor in f(T) gravity
- Observational information for f(T) theories and Dark Torsion
- Nonminimal torsion-matter coupling extension of f(T) gravity
- Conformal transformation in theories
- Static Solutions with Spherical Symmetry in f(T) Theories
- Exact charged black-hole solutions in D-dimensional f(T) gravity: torsion vs curvature analysis
- Cosmological applications of gravity
- New observational constraints on f(T) gravity from cosmic chronometers
- On the CDM Universe in gravity
- Density perturbations in general modified gravitational theories
- Solar System tests in gravity
- Vacuum structure for scalar cosmological perturbations in Modified Gravity Models
- Accretion and Evaporation of Modified Hayward Black Hole
- Observational Constraints on gravity from varying fundamental constants
- Ultra-hard fluid and scalar field in the Kerr-Newman metric
- Inevitable ghost and the degrees of freedom in f(R,G) gravity
- Kerr geometry in f(T) gravity
- Massive photons from Super and Lorentz symmetry breaking
- Dark Matter Accretion into Supermassive Black Holes
- Born-Infeld and Charged Black Holes with non-linear source in Gravity
- Transonic Black Hole Accretion as Analogue System
- Scalar mode propagation in modified gravity with a scalar field
- Black hole accretion in scalar-tensor-vector gravity
- Linear growth of matter density perturbations in f(R,G) theories
- Cyclic and heteroclinic flows near general static spherically symmetric black holes: Semi-cyclic flows -- Addendum and corrigendum
- Homoclinic accretion solutions in the Schwarzschild-anti-de Sitter spacetime
- Born-Infeld electrodynamics in very special relativity
Cited by in corpus (17)
- Stability of motion and thermodynamics in charged black holes in gravity
- Phase Portraits of general f(T) Cosmology
- Quasinormal modes of black holes in f(T) gravity
- The Spherically Symmetric Vacuum in Covariant Gravity Theory
- Deflection angle and lensing signature of covariant f(T) gravity
- Effects of Lorentz breaking on the accretion onto a Schwarzschild-like black hole
- Spontaneous Lorentz symmetry-breaking constraints in Kalb-Ramond gravity
- Accretion of the Vlasov gas onto a Schwarzschild-like black hole
- Periodical orbits and waveforms with spontaneous Lorentz symmetry-breaking in Kalb-Ramond gravity
- On spherically symmetric vacuum solutions and horizons in covariant gravity theory
- Constraints from accretion onto a Tangherlini-Reissner-Nordstrom black hole
- Regular solutions in -Yang-Mills theory
- Accretion of matter by a Charged dilaton black hole
- Exact solution for accretion onto a moving charged dilaton black hole
- Accretion dynamics in black holes with spontaneous Lorentz symmetry breaking
- Sonic Point and Photon Surface
- Spherical accretion onto higher-dimensional Reissner-Nordström Black Hole