The Laser Interferometer Gravitational Wave Observatory (LIGO) and Virgo Collaboration’s Observing Run 3 has demanded the development of widely-applicable tools for gravitational wave follow-up. These tools must address the main challenges of the multi-messenger era, namely covering large localisation regions and quickly identifying decaying transients. To address these challenges, we present a public web interface to assist astronomers in conducting galaxy-targeted follow-up of gravitational wave events by offering a fast and public list of targets post-gravitational wave trigger. After a gravitational wave trigger, the back-end galaxy retrieval algorithm identifies and scores galaxies based on the LIGO and Virgo computed probabilities and...
15 pagesAims. A transient astrophysical event observed in both gravitational wave (GW) and electroma...
LIGO Scientific Collaboration, Virgo CollaborationIn gravitational-wave detection, special emphasis ...
© 2019. The American Astronomical Society.. Advanced LIGO's second observing run (O2), conducted fro...
The detection of GW170817 by Advanced LIGO triggered electromagnetic follow-up by ground and space-b...
International audienceWe present a new strategy to optimize the electromagnetic follow-up of gravita...
We present a new strategy to optimise the electromagnetic follow-up of gravitational wave triggers. ...
We present here a web service https://virgo.pg.infn.it/maps integrated in the environment of the Int...
The recent discoveries of gravitational wave events and in one case also its electromagnetic (EM) co...
International audienceWe present an overview of the SkyMapper optical follow-up programme for gravit...
International audienceGravitational Wave (GW) events are physical processes that significantly pertu...
Gravitational-wave observatories around the world, including the Laser Interferometer Gravitational-...
Gravitational-wave observatories around the world, including the Laser Interferometer Gravitational-...
<p>Aims. A transient astrophysical event observed in both gravitational wave (GW) and electrom...
15 pagesAims. A transient astrophysical event observed in both gravitational wave (GW) and electroma...
LIGO Scientific Collaboration, Virgo CollaborationIn gravitational-wave detection, special emphasis ...
© 2019. The American Astronomical Society.. Advanced LIGO's second observing run (O2), conducted fro...
The detection of GW170817 by Advanced LIGO triggered electromagnetic follow-up by ground and space-b...
International audienceWe present a new strategy to optimize the electromagnetic follow-up of gravita...
We present a new strategy to optimise the electromagnetic follow-up of gravitational wave triggers. ...
We present here a web service https://virgo.pg.infn.it/maps integrated in the environment of the Int...
The recent discoveries of gravitational wave events and in one case also its electromagnetic (EM) co...
International audienceWe present an overview of the SkyMapper optical follow-up programme for gravit...
International audienceGravitational Wave (GW) events are physical processes that significantly pertu...
Gravitational-wave observatories around the world, including the Laser Interferometer Gravitational-...
Gravitational-wave observatories around the world, including the Laser Interferometer Gravitational-...
<p>Aims. A transient astrophysical event observed in both gravitational wave (GW) and electrom...
15 pagesAims. A transient astrophysical event observed in both gravitational wave (GW) and electroma...
LIGO Scientific Collaboration, Virgo CollaborationIn gravitational-wave detection, special emphasis ...
© 2019. The American Astronomical Society.. Advanced LIGO's second observing run (O2), conducted fro...