Searching for gravitational waves (GWs) from binary black holes (BBHs) with LIGO and Virgo involves matched-filtering data against a set of representative signal waveforms --- a template bank --- chosen to cover the full signal space of interest with as few template waveforms as possible. Although the component black holes may have significant angular momenta (spin), previous searches for BBHs have filtered LIGO and Virgo data using only waveforms where both component spins are zero. This leads to a loss of signal-to-noise ratio for signals where this is not the case. Combining the best available template placement techniques and waveform models, we construct a template bank of GW signals from BBHs with component spins $\chi_{1,2}\in [-0.99...
Searches for gravitational-wave transients from binary black hole coalescences typically rely on one...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...
Using recent results from numerical relativity simulations of nonspinning binary black hole mergers,...
We demonstrate for the first time a search pipeline with improved sensitivity to gravitational waves...
Gravitational waves from coalescing compact binaries are one of the most promising sources for detec...
We study the effect of spins on searches for gravitational waves from compact binary coalescences in...
Gravitational waves from coalescing stellar-mass black hole binaries (BBHs) are expected to be detec...
Detection template families (DTFs) are built to capture the essential features of true gravitational...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
textCompact binary coalescing systems: binary neutron stars, neutron star black hole pairs and binar...
Current searches for gravitational waves from coalescing binary black holes (BBH) use templates that...
The detection of the gravitational waves (GWs) emitted by precessing binaries of spinning compact ob...
We report the construction of a three-dimensional template bank for the search for gravitational wav...
Compact binary coalescence (CBC) is one of the most promising sources of gravitational waves. These ...
Current searches for gravitational waves from compact-object binaries with the LIGO and Virgo observ...
Searches for gravitational-wave transients from binary black hole coalescences typically rely on one...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...
Using recent results from numerical relativity simulations of nonspinning binary black hole mergers,...
We demonstrate for the first time a search pipeline with improved sensitivity to gravitational waves...
Gravitational waves from coalescing compact binaries are one of the most promising sources for detec...
We study the effect of spins on searches for gravitational waves from compact binary coalescences in...
Gravitational waves from coalescing stellar-mass black hole binaries (BBHs) are expected to be detec...
Detection template families (DTFs) are built to capture the essential features of true gravitational...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
textCompact binary coalescing systems: binary neutron stars, neutron star black hole pairs and binar...
Current searches for gravitational waves from coalescing binary black holes (BBH) use templates that...
The detection of the gravitational waves (GWs) emitted by precessing binaries of spinning compact ob...
We report the construction of a three-dimensional template bank for the search for gravitational wav...
Compact binary coalescence (CBC) is one of the most promising sources of gravitational waves. These ...
Current searches for gravitational waves from compact-object binaries with the LIGO and Virgo observ...
Searches for gravitational-wave transients from binary black hole coalescences typically rely on one...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...
Using recent results from numerical relativity simulations of nonspinning binary black hole mergers,...