Comparisons of binary black hole merger waveforms
arXiv:gr-qc/0701016 · doi:10.1088/0264-9381/24/12/S03
Abstract
This a particularly exciting time for gravitational wave physics. Ground-based gravitational wave detectors are now operating at a sensitivity such that gravitational radiation may soon be directly detected, and recently several groups have independently made significant breakthroughs that have finally enabled numerical relativists to solve the Einstein field equations for coalescing black-hole binaries, a key source of gravitational radiation. The numerical relativity community is now in the position to begin providing simulated merger waveforms for use by the data analysis community, and it is therefore very important that we provide ways to validate the results produced by various numerical approaches. Here, we present a simple comparison of the waveforms produced by two very different, but equally successful approaches--the generalized harmonic gauge and the moving puncture methods. We compare waveforms of equal-mass black hole mergers with minimal or vanishing spins. The results show exceptional agreement for the final burst of radiation, with some differences attributable to small spins on the black holes in one case.
Revtex 4, 5 pages. Published version
Cited by in corpus (17)
- Faithful Effective-One-Body waveforms of small-mass-ratio coalescing black-hole binaries
- LISA detections of massive black hole inspirals: parameter extraction errors due to inaccurate template waveforms
- Comparing Effective-One-Body gravitational waveforms to accurate numerical data
- Quasi-Normal Modes and Gravitational Wave Astronomy
- A data-analysis driven comparison of analytic and numerical coalescing binary waveforms: nonspinning case
- Faithful Effective-One-Body waveforms of equal-mass coalescing black-hole binaries
- Further insight into gravitational recoil
- Testing outer boundary treatments for the Einstein equations
- Foundations of multiple black hole evolutions
- Filling the holes: Evolving excised binary black hole initial data with puncture techniques
- Final spin of a coalescing black-hole binary: an Effective-One-Body approach
- Introductory lectures on the Effective One Body formalism
- From Geometry to Numerics: interdisciplinary aspects in mathematical and numerical relativity
- Black hole puncture initial data with realistic gravitational wave content
- Dynamical excitation of space-time modes of compact objects
- The periodic standing-wave approximation: post-Minkowski computation
- Robustness of Binary Black Hole Mergers in the Presence of Spurious Radiation