Gravitational waves from coalescing compact binaries are searched for using the matched filtering technique. As the model waveform depends on a number of parameters, it is necessary to filter the data through a template bank covering the astrophysically interesting region of the parameter space. The choice of templates is defined by the maximum allowed drop in signal-to-noise ratio due to the discreteness of the template bank. In this paper we describe the template-bank algorithm that was used in the analysis of data from the Laser Interferometer Gravitational Wave Observatory (LIGO) and GEO 600 detectors to search for signals from binaries consisting of non-spinning compact objects. Using Monte Carlo simulations, we study the efficiency of...
In the framework of matched filtering theory, which is the most promising method for the detection o...
We ascertain the effectiveness of the second post-Newtonian approximation to the gravitational waves...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Gravitational waves from coalescing compact binaries are one of the most promising sources for detec...
We estimate the number of templates, computational power, and storage required for a one-step matche...
We estimate the number of templates, computational power, and storage required for a one-step matche...
We describe the methodology and novel techniques used to construct a set of waveforms, or template b...
We describe the methodology and novel techniques used to construct a set of waveforms, or template b...
Gravitational waves from coalescing stellar-mass black hole binaries (BBHs) are expected to be detec...
Searching for gravitational waves (GWs) from binary black holes (BBHs) with LIGO and Virgo involves ...
It has long been known that the search for gravitational waves from inspiraling binaries must be aid...
We report the construction of a three-dimensional template bank for the search for gravitational wav...
In the framework of matched filtering theory, which is the most promising method for the detection o...
We ascertain the effectiveness of the second post-Newtonian approximation to the gravitational waves...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Gravitational waves from coalescing compact binaries are one of the most promising sources for detec...
We estimate the number of templates, computational power, and storage required for a one-step matche...
We estimate the number of templates, computational power, and storage required for a one-step matche...
We describe the methodology and novel techniques used to construct a set of waveforms, or template b...
We describe the methodology and novel techniques used to construct a set of waveforms, or template b...
Gravitational waves from coalescing stellar-mass black hole binaries (BBHs) are expected to be detec...
Searching for gravitational waves (GWs) from binary black holes (BBHs) with LIGO and Virgo involves ...
It has long been known that the search for gravitational waves from inspiraling binaries must be aid...
We report the construction of a three-dimensional template bank for the search for gravitational wav...
In the framework of matched filtering theory, which is the most promising method for the detection o...
We ascertain the effectiveness of the second post-Newtonian approximation to the gravitational waves...
We investigate the problem of detecting gravitational waves from binaries of nonspinning black holes...