We study the effectiveness of stationary-phase approximated post-Newtonian waveforms currently used by ground-based gravitational-wave detectors to search for the coalescence of binary black holes by comparing them to an accurate waveform obtained from numerical simulation of an equal-mass non-spinning binary black hole inspiral, merger and ringdown. We perform this study for the initial- and advanced-LIGO detectors. We find that overlaps between the templates and signal can be improved by integrating the match filter to higher frequencies than used currently. We propose simple analytic frequency cutoffs for both initial and advanced LIGO, which achieve nearly optimal matches, and can easily be extended to unequal-mass, spinning systems. We...
It is now possible to theoretically calculate the gravitational-wave (GW) signal from the inspiral, ...
Gravitational waves from coalescing stellar-mass black hole binaries (BBHs) are expected to be detec...
Using recent results from numerical relativity simulations of nonspinning binary black hole mergers,...
We study the effectiveness of stationary-phase approximated post-Newtonian waveforms currently used ...
We compare waveforms obtained by numerically evolving nonspinning binary black holes to post-Newtoni...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
We describe the methodology and novel techniques used to construct a set of waveforms, or template b...
The two-body dynamics in general relativity has been solved perturbatively using the post-Newtonian ...
In order to improve the phasing of the comparable-mass waveform as we approach the last stable orbit...
We improve the accuracy of the effective-one-body (EOB) waveforms that were employed during the firs...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...
Expressions for the gravitational wave (GW) energy flux and center-of-mass energy of a compact binar...
The existence of Gravitational Waves from binary black holes is one of the most interesting predicti...
We present gravitational waveforms for the last orbits and merger of black-hole-binary systems along...
We present gravitational waveforms for the last orbits and merger of black-hole-binary (BBH) systems...
It is now possible to theoretically calculate the gravitational-wave (GW) signal from the inspiral, ...
Gravitational waves from coalescing stellar-mass black hole binaries (BBHs) are expected to be detec...
Using recent results from numerical relativity simulations of nonspinning binary black hole mergers,...
We study the effectiveness of stationary-phase approximated post-Newtonian waveforms currently used ...
We compare waveforms obtained by numerically evolving nonspinning binary black holes to post-Newtoni...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
We describe the methodology and novel techniques used to construct a set of waveforms, or template b...
The two-body dynamics in general relativity has been solved perturbatively using the post-Newtonian ...
In order to improve the phasing of the comparable-mass waveform as we approach the last stable orbit...
We improve the accuracy of the effective-one-body (EOB) waveforms that were employed during the firs...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...
Expressions for the gravitational wave (GW) energy flux and center-of-mass energy of a compact binar...
The existence of Gravitational Waves from binary black holes is one of the most interesting predicti...
We present gravitational waveforms for the last orbits and merger of black-hole-binary systems along...
We present gravitational waveforms for the last orbits and merger of black-hole-binary (BBH) systems...
It is now possible to theoretically calculate the gravitational-wave (GW) signal from the inspiral, ...
Gravitational waves from coalescing stellar-mass black hole binaries (BBHs) are expected to be detec...
Using recent results from numerical relativity simulations of nonspinning binary black hole mergers,...