Inspiral-merger-ringdown multipolar waveforms of nonspinning black-hole binaries using the effective-one-body formalism
arXiv:1106.1021 · doi:10.1103/PhysRevD.84.124052
Abstract
We calibrate an effective-one-body (EOB) model to numerical-relativity simulations of mass ratios 1, 2, 3, 4, and 6, by maximizing phase and amplitude agreement of the leading (2,2) mode and of the subleading modes (2,1), (3,3), (4,4) and (5,5). Aligning the calibrated EOB waveforms and the numerical waveforms at low frequency, the phase difference of the (2,2) mode between model and numerical simulation remains below 0.1 rad throughout the evolution for all mass ratios considered. The fractional amplitude difference at peak amplitude of the (2,2) mode is 2% and grows to 12% during the ringdown. Using the Advanced LIGO noise curve we study the effectualness and measurement accuracy of the EOB model, and stress the relevance of modeling the higher-order modes for parameter estimation. We find that the effectualness, measured by the mismatch, between the EOB and numerical-relativity polarizations which include only the (2,2) mode is smaller than 0.2% for binaries with total mass 20-200 Msun and mass ratios 1, 2, 3, 4, and 6. When numerical-relativity polarizations contain the strongest seven modes, and stellar-mass black holes with masses less than 50Msun are considered, the mismatch for mass ratio 6 (1) can be as high as 5% (0.2%) when only the EOB (2,2) mode is included, and an upper bound of the mismatch is 0.5% (0.07%) when all the four subleading EOB modes calibrated in this paper are taken into account. For binaries with intermediate-mass black holes with masses greater than 50Msun the mismatches are larger. We also determine for which signal-to-noise ratios the EOB model developed here can be used to measure binary parameters with systematic biases smaller than statistical errors due to detector noise.
26 pages, 25 figures, published Phys. Rev. D version
References in corpus (35)
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors
- Inspiral, merger and ring-down of equal-mass black-hole binaries
- Model Waveform Accuracy Standards for Gravitational Wave Data Analysis
- High-accuracy waveforms for binary black hole inspiral, merger, and ringdown
- Toward faithful templates for non-spinning binary black holes using the effective-one-body approach
- Faithful Effective-One-Body waveforms of small-mass-ratio coalescing black-hole binaries
- Effective-one-body waveforms calibrated to numerical relativity simulations: coalescence of non-spinning, equal-mass black holes
- An improved analytical description of inspiralling and coalescing black-hole binaries
- Solving Einstein's Equations With Dual Coordinate Frames
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- Effective one body approach to the dynamics of two spinning black holes with next-to-leading order spin-orbit coupling
- Gravitational self-force correction to the innermost stable circular orbit of a Schwarzschild black hole
- Comparing Effective-One-Body gravitational waveforms to accurate numerical data
- A data-analysis driven comparison of analytic and numerical coalescing binary waveforms: nonspinning case
- High-Order Post-Newtonian Fit of the Gravitational Self-Force for Circular Orbits in the Schwarzschild Geometry
- Accurate Effective-One-Body waveforms of inspiralling and coalescing black-hole binaries
- Effective-one-body waveforms calibrated to numerical relativity simulations: coalescence of non-precessing, spinning, equal-mass black holes
- High-accuracy numerical simulation of black-hole binaries: Computation of the gravitational-wave energy flux and comparisons with post-Newtonian approximants
- On IC 10 X-1, the Most Massive Known Stellar-Mass Black Hole
- Gravitational Recoil during Binary Black Hole Coalescence using the Effective One Body Approach
- Faithful Effective-One-Body waveforms of equal-mass coalescing black-hole binaries
- Anatomy of the binary black hole recoil: A multipolar analysis
- The Orbital Period of the Wolf-Rayet Binary IC 10 X-1; Dynamic Evidence that the Compact Object is a Black Hole
- Simulations of non-equal mass black hole binaries with spectral methods
- Extreme Mass-Ratio Inspirals in the Effective-One-Body Approach: Quasi-Circular, Equatorial Orbits around a Spinning Black Hole
- Binary black hole merger in the extreme-mass-ratio limit: a multipolar analysis
- Observing IMBH-IMBH Binary Coalescences via Gravitational Radiation
- Binary black hole coalescence in the extreme-mass-ratio limit: testing and improving the effective-one-body multipolar waveform
- Recoil velocity at 2PN order for spinning black hole binaries
- Final spin of a coalescing black-hole binary: an Effective-One-Body approach
- Accuracy and effectualness of closed-form, frequency-domain waveforms for non-spinning black hole binaries
- Implementation of higher-order absorbing boundary conditions for the Einstein equations
- Length requirements for numerical-relativity waveforms
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