Time-symmetric initial data for binary black holes in numerical relativity
arXiv:gr-qc/0304080 · doi:10.1103/PhysRevD.68.084002
Abstract
We look for physically realistic initial data in numerical relativity which are in agreement with post-Newtonian approximations. We propose a particular solution of the time-symmetric constraint equation, appropriate to two momentarily static black holes, in the form of a conformal decomposition of the spatial metric. This solution is isometric to the post-Newtonian metric up to the 2PN order. It represents a non-linear deformation of the solution of Brill and Lindquist, i.e. an asymptotically flat region is connected to two asymptotically flat (in a certain weak sense) sheets, that are the images of the two singularities through appropriate inversion transformations. The total ADM mass M as well as the individual masses m_1 and m_2 (when they exist) are computed by surface integrals performed at infinity. Using second order perturbation theory on the Brill-Lindquist background, we prove that the binary's interacting mass-energy M-m_1-m_2 is well-defined at the 2PN order and in agreement with the known post-Newtonian result.
27 pages, to appear in Phys. Rev. D
References in corpus (9)
- Gravitational Radiation from Post-Newtonian Sources and Inspiralling Compact Binaries
- Binary black holes in circular orbits. II. Numerical methods and first results
- Modeling gravitational radiation from coalescing binary black holes
- Binary black holes in circular orbits. I. A global spacetime approach
- Innermost circular orbit of binary black holes at the third post-Newtonian approximation
- Circular orbits of corotating binary black holes: comparison between analytical and numerical results
- Post-Newtonian approximation for isolated systems calculated by matched asymptotic expansions
- Binary black hole initial data for numerical general relativity based on post-Newtonian data
- Physics and Initial Data for Multiple Black Hole Spacetimes
Cited by in corpus (11)
- Gravitational Recoil from Binary Black Hole Mergers: the Close-Limit Approximation
- Nonrotating black hole in a post-Newtonian tidal environment
- Equation of motion for relativistic compact binaries with the strong field point particle limit: Third post-Newtonian order
- Metric of a tidally distorted, nonrotating black hole
- Conformally curved binary black hole initial data including tidal deformations and outgoing radiation
- Reducing spurious gravitational radiation in binary-black-hole simulations by using conformally curved initial data
- Beyond the Bowen-York extrinsic curvature for spinning black holes
- Post-Newtonian Freely Specifiable Initial Data for Binary Black Holes in Numerical Relativity
- A skeleton approximate solution of the Einstein field equations for multiple black-hole systems
- Radiation content of Conformally flat initial data
- Entangled universes