We demonstrate the application of a convolutional neural network to the gravitational wave signals from core collapse supernovae. Using simulated time series of gravitational wave detectors, we show that, based on the explosion mechanisms, a convolutional neural network can be used to detect and classify the gravitational wave signals buried in noise. For the waveforms used in the training of the convolutional neural network, our results suggest that a network of advanced LIGO, advanced VIRGO and KAGRA (HLVK), or a network of LIGO A+, advanced VIRGO and KAGRA ( H + L + VL ) is likely to detect a magnetorotational core collapse supernova out to the large or even small Magellanic clouds. A neutrino-driven event is likely to be detectabl...
The next galactic core-collapse supernova (CCSN) has already exploded, and its electromagnetic (EM) ...
We present a follow-up method based on supervised machine learning (ML) to improve the performance i...
We performed a detailed analysis of the detectability of a wide range of gravitational waves derived...
The detection of gravitational waves from core-collapse supernova (CCSN) explosions is a challenging...
Core-Collapse Supernova (CCSN) is one of the most anticipated sources of Gravitational Waves (GW) ar...
While gravitational waves have been detected from mergers of binary black holes and binary neutron s...
A detection of a core-collapse supernova (CCSN) gravitational-wave (GW) signal with an Advanced LIGO...
In the post-detection era of gravitational wave (GW) astronomy, core collapse supernovae (CCSN) are ...
Core-Collapse Supernova (CCSN) is one of the most anticipated sources of Gravitational Waves (GW) in...
Multi-messenger Astrophysics is an emerging multidisciplinary field that demands fast data analysis....
Context. Core-collapse supernovae (CCSNe) are expected to emit gravitational wave signals that could...
A supernova is a star that flares up very suddenly and then slowly returns to its former luminosity ...
We performed a detailed analysis of the detectability of a wide range of gravitational waves derived...
The next galactic core-collapse supernova (CCSN) has already exploded, and its electromagnetic (EM) ...
We present a follow-up method based on supervised machine learning (ML) to improve the performance i...
We performed a detailed analysis of the detectability of a wide range of gravitational waves derived...
The detection of gravitational waves from core-collapse supernova (CCSN) explosions is a challenging...
Core-Collapse Supernova (CCSN) is one of the most anticipated sources of Gravitational Waves (GW) ar...
While gravitational waves have been detected from mergers of binary black holes and binary neutron s...
A detection of a core-collapse supernova (CCSN) gravitational-wave (GW) signal with an Advanced LIGO...
In the post-detection era of gravitational wave (GW) astronomy, core collapse supernovae (CCSN) are ...
Core-Collapse Supernova (CCSN) is one of the most anticipated sources of Gravitational Waves (GW) in...
Multi-messenger Astrophysics is an emerging multidisciplinary field that demands fast data analysis....
Context. Core-collapse supernovae (CCSNe) are expected to emit gravitational wave signals that could...
A supernova is a star that flares up very suddenly and then slowly returns to its former luminosity ...
We performed a detailed analysis of the detectability of a wide range of gravitational waves derived...
The next galactic core-collapse supernova (CCSN) has already exploded, and its electromagnetic (EM) ...
We present a follow-up method based on supervised machine learning (ML) to improve the performance i...
We performed a detailed analysis of the detectability of a wide range of gravitational waves derived...