Black-hole horizons as probes of black-hole dynamics I: post-merger recoil in head-on collisions
arXiv:1108.0060 · doi:10.1103/PhysRevD.85.084030
Abstract
The understanding of strong-field dynamics near black-hole horizons is a long-standing and challenging prob- lem in general relativity. Recent advances in numerical relativity and in the geometric characterization of black- hole horizons open new avenues into the problem. In this first paper in a series of two, we focus on the analysis of the recoil occurring in the merger of binary black holes, extending the analysis initiated in [1] with Robinson- Trautman spacetimes. More specifically, we probe spacetime dynamics through the correlation of quantities defined at the black-hole horizon and at null infinity. The geometry of these hypersurfaces responds to bulk gravitational fields acting as test screens in a scattering perspective of spacetime dynamics. Within a 3 + 1 approach we build an effective-curvature vector from the intrinsic geometry of dynamical-horizon sections and correlate its evolution with the flux of Bondi linear momentum at large distances. We employ this setup to study numerically the head-on collision of nonspinning black holes and demonstrate its validity to track the qualita- tive aspects of recoil dynamics at infinity. We also make contact with the suggestion that the antikick can be described in terms of a "slowness parameter" and how this can be computed from the local properties of the horizon. In a companion paper [2] we will further elaborate on the geometric aspects of this approach and on its relation with other approaches to characterize dynamical properties of black-hole horizons.
final version published on PRD
References in corpus (22)
- Large Merger Recoils and Spin Flips From Generic Black-Hole Binaries
- Total recoil: the maximum kick from nonspinning black-hole binary inspiral
- Supermassive recoil velocities for binary black-hole mergers with antialigned spins
- Getting a kick out of numerical relativity
- Recoil velocities from equal-mass binary black-hole mergers: a systematic investigation of spin-orbit aligned configurations
- Gravitational Recoil during Binary Black Hole Coalescence using the Effective One Body Approach
- Anatomy of the binary black hole recoil: A multipolar analysis
- The final spin from the coalescence of aligned-spin black-hole binaries
- Introduction to dynamical horizons in numerical relativity
- Further insight into gravitational recoil
- Understanding the "anti-kick" in the merger of binary black holes
- Superkicks in Hyperbolic Encounters of Binary Black Holes
- Modelling the final state from binary black-hole coalescences
- Superkicks in ultrarelativistic encounters of spinning black holes
- Modeling Gravitational Recoil Using Numerical Relativity
- The Efficiency of Gravitational Bremsstrahlung Production in the Collision of Two Schwarzschild Black Holes
- Systematics of black hole binary inspiral kicks and the slowness approximation
- A hybrid method for understanding black-hole mergers: head-on case
- Numerical evolution of general Robinson-Trautman spacetimes: code tests, wave forms and the efficiency of the gravitational wave extraction
- Numerical evolution of radiative Robinson-Trautman spacetimes
- Gravitational wave recoil in Robinson-Trautman spacetimes
- Past horizons in D-dimensional Robinson-Trautman spacetimes
Cited by in corpus (35)
- The Overlap of Numerical Relativity, Perturbation Theory and Post-Newtonian Theory in the Binary Black Hole Problem
- A new public code for initial data of unequal-mass, spinning compact-object binaries
- Energy scales and black hole pseudospectra: the structural role of the scalar product
- Modeling the remnant mass, spin, and recoil from unequal-mass, precessing black-hole binaries: The Intermediate Mass Ratio Regime
- Hyperboloidal slicing approach to quasi-normal mode expansions: the Reissner-Nordström case
- Pseudospectrum and binary black hole merger transients
- Quasinormal modes and their overtones at the common horizon in a binary black hole merger
- Dynamics of marginally trapped surfaces in a binary black hole merger: Growth and approach to equilibrium
- Astrophysics of Super-massive Black Hole Mergers
- Spacetime near isolated and dynamical trapping horizons
- Black-hole horizons as probes of black-hole dynamics II: geometrical insights
- News from horizons in binary black hole mergers
- Charges and Fluxes on (Perturbed) Non-expanding Horizons
- Dynamical Black Holes: Approach to the Final State
- The existence and stability of marginally trapped surfaces
- Comparing Remnant Properties from Horizon Data and Asymptotic Data in Numerical Relativity
- Cosmic Matter Flux May Turn Hawking Radiation Off
- What Happens to Apparent Horizons in a Binary Black Hole Merger?
- Quasi-local black hole horizons
- Initial data for perturbed Kerr black holes on hyperboloidal slices
- Post-merger chirps from binary black holes as probes of the final black-hole horizon
- Multipole moments on the common horizon in a binary-black-hole simulation
- Spectroscopy for asymmetric binary black hole mergers
- Visualizing Spacetime Curvature via Gradient Flows I: Introduction
- Inside the Final Black Hole: Puncture and Trapped Surface Dynamics
- Well-posed non-vacuum solutions in Robinson--Trautman geometry
- Horizons as boundary conditions in spherical symmetry
- Avenues for Analytic exploration in Axisymmetric Spacetimes. Foundations and the Triad Formalism
- Three little pieces for computer and relativity
- New results for electromagnetic quasinormal modes of black holes
- Analytical Tendex and Vortex Fields for Perturbative Black Hole Initial Data
- Accurate models for recoil velocity distribution in black hole mergers with comparable to extreme mass-ratios and their astrophysical implications
- Dynamical Horizon Segments and Spacetime Isometries
- Gravitational wave recoils in non-axisymmetric Robinson-Trautman spacetimes
- Curvature Invariants and the Geometric Horizon Conjecture in a Binary Black Hole Merger