Modeling gravitational radiation from coalescing binary black holes
arXiv:astro-ph/0202469 · doi:10.1103/PhysRevD.65.124012
Abstract
With the goal of bringing theory, particularly numerical relativity, to bear on an astrophysical problem of critical interest to gravitational wave observers we introduce a model for coalescence radiation from binary black hole systems. We build our model using the "Lazarus approach", a technique that bridges far and close limit approaches with full numerical relativity to solve Einstein equations applied in the truly nonlinear dynamical regime. We specifically study the post-orbital radiation from a system of equal-mass non-spinning black holes, deriving waveforms which indicate strongly circularly polarized radiation of roughly 3% of the system's total energy and 12% of its total angular momentum in just a few cycles. Supporting this result we first establish the reliability of the late-time part of our model, including the numerical relativity and close-limit components, with a thorough study of waveforms from a sequence of black hole configurations varying from previously treated head-on collisions to representative target for ``ISCO'' data corresponding to the end of the inspiral period. We then complete our model with a simple treatment for the early part of the spacetime based on a standard family of initial data for binary black holes in circular orbit. A detailed analysis shows strong robustness in the results as the initial separation of the black holes is increased from 5.0 to 7.8M supporting our waveforms as a suitable basic description of the astrophysical radiation from this system. Finally, a simple fitting of the plunge waveforms is introduced as a first attempt to facilitate the task of analyzing data from gravitational wave detectors.
23 pages, 36 figures, RevTeX4
References in corpus (8)
- Dimensional regularization of the gravitational interaction of point masses
- Binary black holes in circular orbits. II. Numerical methods and first results
- The Lazarus project: A pragmatic approach to binary black hole evolutions
- Corotating and irrotational binary black holes in quasi-circular orbits
- Innermost circular orbit of binary black holes at the third post-Newtonian approximation
- Plunge waveforms from inspiralling binary black holes
- The 3D Grazing Collision of Two Black Holes
- New conformally flat initial data for spinning black holes
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