Geometry and dynamics of a tidally deformed black hole
arXiv:0910.4311 · doi:10.1103/PhysRevD.81.024029
Abstract
The metric of a nonrotating black hole deformed by a tidal interaction is calculated and expressed as an expansion in the strength of the tidal coupling. The expansion parameter is the inverse length scale R^{-1}, where R is the radius of curvature of the external spacetime in which the black hole moves. The expansion begins at order R^{-2}, and it is carried out through order R^{-4}. The metric is parameterized by a number of tidal multipole moments, which specify the black hole's tidal environment. The tidal moments are freely-specifiable functions of time that are related to the Weyl tensor of the external spacetime. The metric is presented in a light-cone coordinate system that possesses a clear geometrical meaning: The advanced-time coordinate is constant on past light cones that converge toward the black hole; the angles theta and phi are constant on the null generators of each light cone; and the radial coordinate r is an affine parameter on each generator, which decreases as the light cones converge toward the black hole. The coordinates are well-behaved on the black-hole horizon, and they are adjusted so that the coordinate description of the horizon is the same as in the Schwarzschild geometry: r = 2M. At the order of accuracy maintained in this work, the horizon is a stationary null hypersurface foliated by apparent horizons; it is an isolated horizon in the sense of Ashtekar and Krishnan. As an application of our results we examine the induced geometry and dynamics of the horizon, and calculate the rate at which the black-hole surface area increases as a result of the tidal interaction.
43 pages, 2 figures
References in corpus (17)
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Relativistic tidal properties of neutron stars
- Relativistic theory of tidal Love numbers
- Gravitational wave snapshots of generic extreme mass ratio inspirals
- Gravitational radiation reaction and inspiral waveforms in the adiabatic limit
- Nonrotating black hole in a post-Newtonian tidal environment
- On the gravitational polarizability of black holes
- High accuracy simulations of black hole binaries:spins anti-aligned with the orbital angular momentum
- Conformally curved binary black hole initial data including tidal deformations and outgoing radiation
- Black hole puncture initial data with realistic gravitational wave content
- Tidal interaction of black holes and Newtonian viscous bodies
- Interior of Distorted Black Holes
- A light-cone gauge for black-hole perturbation theory
- Interior of a Charged Distorted Black Hole
- Tidal interaction of a small black hole in the field of a large Kerr black hole
- Light-cone coordinates based at a geodesic world line
Cited by in corpus (62)
- Tidal Deformation and Dissipation of Rotating Black Holes
- Tidal Love Numbers of Kerr Black Holes
- Tidal deformation of a slowly rotating material body. External metric
- Cubic order spin effects in the dynamics and gravitational wave energy flux of compact object binaries
- Nonrotating black hole in a post-Newtonian tidal environment
- Tidal deformation of a slowly rotating black hole
- Black hole perturbation theory and gravitational self-force
- Nonlinear gravitational self-force: second-order equation of motion
- Tidal heating and torquing of a Kerr black hole to next-to-leading order in the tidal coupling
- A practical, covariant puncture for second-order self-force calculations
- Nonlinear gravitational self-force. I. Field outside a small body
- First Law of Mechanics for Compact Binaries on Eccentric Orbits
- Compact body in a tidal environment: New types of relativistic Love numbers, and a post-Newtonian operational definition for tidally induced multipole moments
- Spacetime near isolated and dynamical trapping horizons
- Improved next-to-leading order tidal heating and torquing of a Kerr black hole
- How Fluids Bend: the Elastic Expansion for Higher-Dimensional Black Holes
- Second-order gravitational self-force in a highly regular gauge
- Evolution of Highly Eccentric Binary Neutron Stars Including Tidal Effects
- Can we probe Planckian corrections at the horizon scale with gravitational waves?
- Horizon-absorbed energy flux in circularized, nonspinning black-hole binaries and its effective-one-body representation
- Singular perturbation techniques in the gravitational self-force problem
- Importance of tidal resonances in extreme-mass-ratio inspirals
- General Relativistic Dynamics of an Extreme Mass-Ratio Binary interacting with an External Body
- Approximate black hole binary spacetime via asymptotic matching
- The spacetime in the neighborhood of a general isolated black hole
- Intrinsic and extrinsic geometries of a tidally deformed black hole
- Inspiralling eccentric binary neutron stars: orbital motion and tidal resonance
- Tidal deformations of a binary system induced by an external Kerr black hole
- Extended I-Love relations for slowly rotating neutron stars
- Octupolar invariants for compact binaries on quasi-circular orbits
- Quantum hair of black holes out of equilibrium
- Binary mergers in strong gravity background of Kerr black hole
- Gravitational Instability of Exotic Compact Objects
- Vanishing of Quadratic Love Numbers of Schwarzschild Black Holes
- On the proximity of black hole horizons: lessons from Vaidya
- Strong-field tidal distortions of rotating black holes: II. Horizon dynamics from eccentric and inclined orbits
- Nonrotating black hole in a post-Newtonian tidal environment II
- Event Horizon Deformations in Extreme Mass-Ratio Black Hole Mergers
- Asymptotically Matched Spacetime Metric for Non-Precessing, Spinning Black Hole Binaries
- Gravitational memory: new results from post-Newtonian and self-force theory
- Tidal forces in parametrized spacetime: Rezzolla-Zhidenko parametrization
- On geometry of deformed black holes: II. Schwarzschild hole surrounded by a Bach-Weyl ring
- Second-order gravitational self-force in a highly regular gauge: Covariant and coordinate punctures
- Strong-gravity precession resonances for binary systems orbiting a Schwarzschild black hole
- The Bondi-Sachs metric at the vertex of a null cone: axially symmetric vacuum solutions
- Worldtube excision method for intermediate-mass-ratio inspirals: scalar-field toy model
- Motion of small bodies in general relativity: foundations and implementations of the self-force
- Tidal deformations of spinning black holes in Bowen-York initial data
- Emission Channels from Perturbed Quantum Black Holes
- Dynamical Tidal Response of Non-rotating Black Holes: Connecting the MST Formalism and Worldline EFT
- A Distorted Black Ring
- EZ gauge is singular at the event horizon
- Relieving scale disparity in binary black hole simulations
- Spin-up and mass-gain in hyperbolic encounters of spinning black holes
- Initial data for a deformed isolated horizon
- Quantum State of Black-Holes Out of Equilibrium
- Repeated Bursts: Gravitational Waves from Highly Eccentric Binaries
- Strong-field tidal distortions of rotating black holes: III. Embeddings in hyperbolic 3-space
- Distributional sources for black hole initial data
- Observable signature of magnetic tidal coupling in hierarchical triple systems
- Second order gauge invariant measure of a tidally deformed black hole
- Tidal perturbations of an extreme mass ratio inspiral around a Kerr black hole