Dynamical black holes and accretion-induced backreaction
arXiv:2507.03082 · doi:10.3390/universe11070202
Abstract
We investigate the evolution of future trapping horizons through the dynamics of the Misner-Sharp mass using ingoing Eddington-Finkelstein coordinates. Our analysis shows that an integral formulation of Hayward's first law governs much of the evolution of general spherically symmetric spacetimes. To account for the accretion backreaction, we consider a near-horizon approximation, yielding first-order corrections of a Vaidya-dark energy form. We further propose a systematic perturbative scheme to study these effects for an arbitrary background. As an application, we analyze an accreting Reissner-Nordström black hole and demonstrate the horizon shifts that are produced. Finally, we compute accretion-induced corrections to an extremal configuration. It is shown that momentum influx and energy density produce distinct effects: the former forces the splitting of the extremal horizon, while the latter induces significant displacements in its position, computed up to first-order perturbative corrections. These results highlight how different components of the stress-energy tensor significantly affect horizon geometry, with potential implications for broader areas of research, including black-hole thermodynamics.
13 pages, 1 figure, published version
References in corpus (18)
- Isolated and dynamical horizons and their applications
- Unified first law of black-hole dynamics and relativistic thermodynamics
- Black hole boundaries
- Mass, inertia and gravitation
- Motion in alternative theories of gravity
- Kodama time: Geometrically preferred foliations of spherically symmetric spacetimes
- Dynamical surface gravity
- Physical observability of horizons
- More on McVittie's Legacy: A Schwarzschild - de Sitter black and white hole embedded in an asymptotically CDM cosmology
- On the generalization of McVittie's model for an inhomogeneity in a cosmological spacetime
- Black holes and black hole thermodynamics without event horizons
- Spherically symmetric trapping horizons, the Misner-Sharp mass and black hole evaporation
- Backreaction of accreting matter onto a black hole in the Eddington-Finkelstein coordinates
- The charged McVittie spacetime
- Cosmological black holes and white holes with time-dependent mass
- Quantum Mechanical Corrections to the Schwarzschild Black Hole Metric
- Fundamental properties and applications of quasi-local black hole horizons
- Dynamical model for primordial black holes