The detection of the binary neutron star merger, GW170817, was the first success story of multi-messenger observations of compact binary mergers. The inferred merger rate, along with the increased sensitivity of the ground-based gravitational-wave (GW) network in the present LIGO/Virgo, and future LIGO/Virgo/KAGRA observing runs, strongly hints at detections of binaries that could potentially have an electromagnetic (EM) counterpart. A rapid assessment of properties that could lead to a counterpart is essential to aid time-sensitive follow-up operations, especially robotic telescopes. At minimum, the possibility of counterparts requires a neutron star (NS). Also, the tidal disruption physics is important to determine the remnant matter post...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
We apply machine learning methods to build a time-domain model for gravitational waveforms from bina...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
The detection of the binary neutron star merger, GW170817, was the first success story of multi-mess...
We present a novel machine learning (ML) based strategy to search for binary black hole (BBH) merger...
We demonstrate the application of the YOLOv5 model, a general purpose convolution-based object detec...
154 pagesThe LIGO/Virgo collaboration has detected gravitational waves from dozens of binary blac...
© 2019 authors. Published by the American Physical Society. On August 17, 2017, the Advanced LIGO an...
The discovery of GW170817 with gravitational waves (GWs) and electromagnetic (EM) radiation is promp...
International audienceGW170817 - GRB 170817A provided the first observation of gravitational waves f...
International audienceGW170817–GRB 170817A provided the first observation of gravitational waves fro...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
On August 17, 2017, the Advanced LIGO and Advanced Virgo gravitational-wave detectors observed a low...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
We apply machine learning methods to build a time-domain model for gravitational waveforms from bina...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
The detection of the binary neutron star merger, GW170817, was the first success story of multi-mess...
We present a novel machine learning (ML) based strategy to search for binary black hole (BBH) merger...
We demonstrate the application of the YOLOv5 model, a general purpose convolution-based object detec...
154 pagesThe LIGO/Virgo collaboration has detected gravitational waves from dozens of binary blac...
© 2019 authors. Published by the American Physical Society. On August 17, 2017, the Advanced LIGO an...
The discovery of GW170817 with gravitational waves (GWs) and electromagnetic (EM) radiation is promp...
International audienceGW170817 - GRB 170817A provided the first observation of gravitational waves f...
International audienceGW170817–GRB 170817A provided the first observation of gravitational waves fro...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
On August 17, 2017, the Advanced LIGO and Advanced Virgo gravitational-wave detectors observed a low...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...
We apply machine learning methods to build a time-domain model for gravitational waveforms from bina...
GW170817 is the very first observation of gravitational waves originating from the coalescence of tw...