In searching for continuous gravitational waves over very many ($\approx 10^{17}$) templates , clustering is a powerful tool which increases the search sensitivity by identifying and bundling together candidates that are due to the same root cause. We implement a deep learning network that identifies clusters of signal candidates in the output of continuous gravitational wave searches and assess its performance
Gravitational waves, predicted by Albert Einstein in 1916 and first directly observed in 2015, are a...
Gravitational waves from the coalescence of compact-binary sources are now routinely observed by Ear...
Many potential sources of gravitational waves still await for detection. Among them, particular atte...
Searches for continuous gravitational waves target nearly monochromaticgravitational wave emission f...
In hierarchical searches for continuous gravitational waves, clustering of candidates is an importan...
We present a first proof-of-principle study for using deep neural networks (DNNs) as a novel search ...
Compact binary systems emit gravitational radiation which is potentially detectable by current Earth...
Fully coherent searches (over realistic ranges of parameter space and year-long observation times) f...
Gravitational-wave bursts are observable as bright clusters of pixels in spectrograms of strain powe...
We report on the construction of a deep convolutional neural network that can reproduce the sensitiv...
We present a first proof-of-principle study for using deep neural networks (DNNs) as a novel search ...
Many continuous gravitational wave searches are affected by instrumental spectral lines that could b...
We explore machine learning methods to detect gravitational waves (GW) from binary black hole (BBH)...
We explore machine learning methods to detect gravitational waves (GW) from binary black hole (BBH) ...
International audienceIn this paper we present a study of some relevant steps of the hierarchical fr...
Gravitational waves, predicted by Albert Einstein in 1916 and first directly observed in 2015, are a...
Gravitational waves from the coalescence of compact-binary sources are now routinely observed by Ear...
Many potential sources of gravitational waves still await for detection. Among them, particular atte...
Searches for continuous gravitational waves target nearly monochromaticgravitational wave emission f...
In hierarchical searches for continuous gravitational waves, clustering of candidates is an importan...
We present a first proof-of-principle study for using deep neural networks (DNNs) as a novel search ...
Compact binary systems emit gravitational radiation which is potentially detectable by current Earth...
Fully coherent searches (over realistic ranges of parameter space and year-long observation times) f...
Gravitational-wave bursts are observable as bright clusters of pixels in spectrograms of strain powe...
We report on the construction of a deep convolutional neural network that can reproduce the sensitiv...
We present a first proof-of-principle study for using deep neural networks (DNNs) as a novel search ...
Many continuous gravitational wave searches are affected by instrumental spectral lines that could b...
We explore machine learning methods to detect gravitational waves (GW) from binary black hole (BBH)...
We explore machine learning methods to detect gravitational waves (GW) from binary black hole (BBH) ...
International audienceIn this paper we present a study of some relevant steps of the hierarchical fr...
Gravitational waves, predicted by Albert Einstein in 1916 and first directly observed in 2015, are a...
Gravitational waves from the coalescence of compact-binary sources are now routinely observed by Ear...
Many potential sources of gravitational waves still await for detection. Among them, particular atte...