Compact binary coalescence (CBC) is one of the most promising sources of gravitational waves. These sources are usually searched for with matched filters which require accurate calculation of the GW waveforms and generation of large template banks. We present a complementary search technique based on algorithms used in un-modeled searches. Initially designed for detection of un-modeled bursts, which can span a very large set of waveform morphologies, the search algorithm presented here is constrained for targeted detection of the smaller subset of CBC signals. The constraint is based on the assumption of elliptical polarisation for signals received at the detector. We expect that the algorithm is sensitive to CBC signals in a wide range of ...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
We demonstrate for the first time a search pipeline with improved sensitivity to gravitational waves...
This is an exciting time for Gravitational Wave (GW) theory and observations. From a theoretical sta...
Compact binary coalescence (CBC) is one of the most promising sources of gravitational waves. These ...
We describe the implementation of a search for gravitational waves from compact binary coalescences ...
Searching for gravitational waves (GWs) from binary black holes (BBHs) with LIGO and Virgo involves ...
We describe the search pipeline, called PyCBC , used to identify gravitational wave candidates in Ad...
The detection of gravitational waves from coalescing compact binaries would be a computationally int...
Most of compact binary systems are expected to circularize before the frequency of emitted gravitati...
Gravitational waves from coalescing compact binaries are one of the most promising sources for detec...
The second generation of ground-based gravitational-wave detectors will begin taking data in Septemb...
Coalescing binary black-hole systems are among the most promising sources of gravitational waves for...
Searches for gravitational-wave transients from binary black hole coalescences typically rely on one...
Searching for gravitational waves from compact binary coalescences (CBC) is performed by matched fil...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
We demonstrate for the first time a search pipeline with improved sensitivity to gravitational waves...
This is an exciting time for Gravitational Wave (GW) theory and observations. From a theoretical sta...
Compact binary coalescence (CBC) is one of the most promising sources of gravitational waves. These ...
We describe the implementation of a search for gravitational waves from compact binary coalescences ...
Searching for gravitational waves (GWs) from binary black holes (BBHs) with LIGO and Virgo involves ...
We describe the search pipeline, called PyCBC , used to identify gravitational wave candidates in Ad...
The detection of gravitational waves from coalescing compact binaries would be a computationally int...
Most of compact binary systems are expected to circularize before the frequency of emitted gravitati...
Gravitational waves from coalescing compact binaries are one of the most promising sources for detec...
The second generation of ground-based gravitational-wave detectors will begin taking data in Septemb...
Coalescing binary black-hole systems are among the most promising sources of gravitational waves for...
Searches for gravitational-wave transients from binary black hole coalescences typically rely on one...
Searching for gravitational waves from compact binary coalescences (CBC) is performed by matched fil...
Gravitational waves from coalescing compact binaries are searched for using the matched filtering te...
Recent progress in numerical relativity now allows computation of the binary black hole merger, wher...
We demonstrate for the first time a search pipeline with improved sensitivity to gravitational waves...
This is an exciting time for Gravitational Wave (GW) theory and observations. From a theoretical sta...