International audienceWe present a comprehensive study of the effectiveness of convolution neural networks (CNNs) to detect long-duration transient gravitational-wave signals lasting O(hours–days) from isolated neutron stars. We determine that CNNs are robust towards signal morphologies that differ from the training set, and they do not require many training injections/data to guarantee good detection efficiency and low false alarm probability. In fact, we only need to train one CNN on signal/noise maps in a single 150 Hz band; afterwards, the CNN can distinguish signals/noise well in any band, though with different efficiencies and false alarm probabilities due to the nonstationary noise in LIGO/Virgo. We demonstrate that we can control th...
Machine learning can be a powerful tool to discover new signal types in astronomical data. We here a...
Many potential sources of gravitational waves still await for detection. Among them, particular atte...
As two neutron stars merge, they emit gravitational waves that can potentially be detected by earth ...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
Machine learning can be a powerful tool to discover new signal types in astronomical data. We here a...
Machine learning can be a powerful tool to discover new signal types in astronomical data. We here a...
Many potential sources of gravitational waves still await for detection. Among them, particular atte...
As two neutron stars merge, they emit gravitational waves that can potentially be detected by earth ...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
International audienceWe present a comprehensive study of the effectiveness of convolution neural ne...
Machine learning can be a powerful tool to discover new signal types in astronomical data. We here a...
Machine learning can be a powerful tool to discover new signal types in astronomical data. We here a...
Many potential sources of gravitational waves still await for detection. Among them, particular atte...
As two neutron stars merge, they emit gravitational waves that can potentially be detected by earth ...