Suitability of hybrid gravitational waveforms for unequal-mass binaries
arXiv:1210.3007 · doi:10.1103/PhysRevD.87.024009
Abstract
This article studies sufficient accuracy criteria of hybrid post-Newtonian (PN) and numerical relativity (NR) waveforms for parameter estimation of strong binary black-hole sources in second- generation ground-based gravitational-wave detectors. We investigate equal-mass non-spinning binaries with a new 33-orbit NR waveform, as well as unequal-mass binaries with mass ratios 2, 3, 4 and 6. For equal masses, the 33-orbit NR waveform allows us to recover previous results and to extend the analysis toward matching at lower frequencies. For unequal masses, the errors between different PN approximants increase with mass ratio. Thus, at 3.5PN, hybrids for higher-mass-ratio systems would require NR waveforms with many more gravitational-wave (GW) cycles to guarantee no adverse impact on parameter estimation. Furthermore, we investigate the potential improvement in hybrid waveforms that can be expected from 4th order post-Newtonian waveforms, and find that knowledge of this 4th post-Newtonian order would significantly improve the accuracy of hybrid waveforms.
11 pages, 14 figures
References in corpus (12)
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- 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
- Using Full Information When Computing Modes of Post-Newtonian Waveforms From Inspiralling Compact Binaries in Circular Orbit
- High-accuracy numerical simulation of black-hole binaries: Computation of the gravitational-wave energy flux and comparisons with post-Newtonian approximants
- Comparison of Numerical and Post-Newtonian Waveforms for Generic Precessing Black-Hole Binaries
- Simulations of black-hole binaries with unequal masses or non-precessing spins: accuracy, physical properties, and comparison with post-Newtonian results
- Accuracy and effectualness of closed-form, frequency-domain waveforms for non-spinning black hole binaries
- Impact of Higher-order Modes on the Detection of Binary Black Hole Coalescences
- Length requirements for numerical-relativity waveforms
- Are different approaches to constructing initial data for binary black hole simulations of the same astrophysical situation equivalent?
Cited by in corpus (39)
- Frequency-domain gravitational waves from non-precessing black-hole binaries. II. A phenomenological model for the advanced detector era
- Frequency-domain gravitational waves from non-precessing black-hole binaries. I. New numerical waveforms and anatomy of the signal
- The SXS Collaboration catalog of binary black hole simulations
- A catalog of 174 binary black-hole simulations for gravitational-wave astronomy
- Surrogate model of hybridized numerical relativity binary black hole waveforms
- Improved effective-one-body description of coalescing nonspinning black-hole binaries and its numerical-relativity completion
- Error-analysis and comparison to analytical models of numerical waveforms produced by the NRAR Collaboration
- An eccentric binary black hole inspiral-merger-ringdown gravitational waveform model from numerical relativity and post-Newtonian theory
- A novel scheme for rapid parallel parameter estimation of gravitational waves from compact binary coalescences
- Angular velocity of gravitational radiation from precessing binaries and the corotating frame
- An effectual template bank for the detection of gravitational waves from inspiralling compact binaries with generic spins
- Numerical relativity reaching into post-Newtonian territory: a compact-object binary simulation spanning 350 gravitational-wave cycles
- The Overlap of Numerical Relativity, Perturbation Theory and Post-Newtonian Theory in the Binary Black Hole Problem
- Detectability of gravitational waves from binary black holes: Impact of precession and higher modes
- A Parameter Estimation Method that Directly Compares Gravitational Wave Observations to Numerical Relativity
- On the accuracy and precision of numerical waveforms: Effect of waveform extraction methodology
- Three-Dimensional General-Relativistic Hydrodynamic Simulations of Binary Neutron Star Coalescence and Stellar Collapse with Multipatch Grids
- First direct comparison of non-disrupting neutron star-black hole and binary black hole merger simulations
- Numerical Relativity of Compact Binaries in the 21st Century
- Effects of nonquadrupole modes in the detection and parameter estimation of black hole binaries with nonprecessing spins
- A first survey of spinning eccentric black hole mergers: Numerical relativity simulations, hybrid waveforms, and parameter estimation
- Periastron Advance in Spinning Black Hole Binaries: Gravitational Self-Force from Numerical Relativity
- Accuracy and precision of gravitational-wave models of inspiraling neutron star -- black hole binaries with spin: comparison with numerical relativity in the low-frequency regime
- Simulations of inspiraling and merging double neutron stars using the Spectral Einstein Code
- The SXS Collaboration's third catalog of binary black hole simulations
- Comparing Post-Newtonian and Numerical-Relativity Precession Dynamics
- Accuracy of binary black hole waveform models for aligned-spin binaries
- Precession-tracking coordinates for simulations of compact-object-binaries
- The General Relativistic Two Body Problem and the Effective One Body Formalism
- Modelling gravitational waves from precessing black-hole binaries: Progress, challenges and prospects
- Stability of nonspinning effective-one-body model in approximating two-body dynamics and gravitational-wave emission
- Compact binary coalescences: Constraints on waveforms
- Exploring the Outer Limits of Numerical Relativity
- Template Banks for Binary black hole searches with Numerical Relativity waveforms
- Interpolation in waveform space: enhancing the accuracy of gravitational waveform families using numerical relativity
- Including realistic tidal deformations in binary black-hole initial data
- Optimizing post-Newtonian parameters and fixing the BMS frame for numerical-relativity waveform hybridizations
- Hybrid waveforms for generic precessing binaries for gravitational-wave data analysis
- Connecting Numerical Relativity and Data Analysis of Gravitational Wave Detectors