International audienceThe discovery of the electromagnetic counterpart to the binary neutron star (NS) merger GW170817 has opened the era of gravitational-wave multimessenger astronomy. Rapid identification of the optical/infrared kilonova enabled a precise localization of the source, which paved the way to deep multiwavelength follow-up and its myriad of related science results. Fully exploiting this new territory of exploration requires the acquisition of electromagnetic data from samples of NS mergers and other gravitational-wave sources. After GW170817, the frontier is now to map the diversity of kilonova properties and provide more stringent constraints on the Hubble constant, and enable new tests of fundamental physics. The Vera C. Ru...
The discovery of binary neutron star merger GW170817 from its gravitational wave signature, together...
The Einstein Telescope (ET) is going to bring a revolution for the future of multimessenger astrophy...
Context. Gravitational wave (GW) astronomy has rapidly reached maturity, becoming a fundamental obse...
The discovery of the electromagnetic counterpart to the binary neutron star (NS) merger GW170817 has...
The discovery of the electromagnetic counterpart to the binary neutron star (NS) merger GW170817 has...
The discovery of the electromagnetic counterparts to the binary neutron star merger GW170817 has ope...
The modern study of astrophysics is being transformed by advances across multiple fronts. New fast, ...
International audienceThe binary neutron star merger gravitational-wave signal GW170817 was followed...
On 17th August 2017 a strong source of gravitational waves was detected by the LIGO-Virgo collaborat...
Presented at the 38th International Cosmic Ray Conference (ICRC 2023), 2023 (arXiv:2309.08219)2310.0...
The first secure detection of a gravitationally lensed gravitational (GW) will be a watershed moment...
International audienceThe detection of electromagnetic (EM) emission following the gravitational wav...
Context. Gravitational wave (GW) astronomy has rapidly reached maturity, becoming a fundamental obse...
Context. Gravitational wave (GW) astronomy has rapidly reached maturity, becoming a fundamental obse...
The discovery of binary neutron star merger GW170817 from its gravitational wave signature, together...
The Einstein Telescope (ET) is going to bring a revolution for the future of multimessenger astrophy...
Context. Gravitational wave (GW) astronomy has rapidly reached maturity, becoming a fundamental obse...
The discovery of the electromagnetic counterpart to the binary neutron star (NS) merger GW170817 has...
The discovery of the electromagnetic counterpart to the binary neutron star (NS) merger GW170817 has...
The discovery of the electromagnetic counterparts to the binary neutron star merger GW170817 has ope...
The modern study of astrophysics is being transformed by advances across multiple fronts. New fast, ...
International audienceThe binary neutron star merger gravitational-wave signal GW170817 was followed...
On 17th August 2017 a strong source of gravitational waves was detected by the LIGO-Virgo collaborat...
Presented at the 38th International Cosmic Ray Conference (ICRC 2023), 2023 (arXiv:2309.08219)2310.0...
The first secure detection of a gravitationally lensed gravitational (GW) will be a watershed moment...
International audienceThe detection of electromagnetic (EM) emission following the gravitational wav...
Context. Gravitational wave (GW) astronomy has rapidly reached maturity, becoming a fundamental obse...
Context. Gravitational wave (GW) astronomy has rapidly reached maturity, becoming a fundamental obse...
The discovery of binary neutron star merger GW170817 from its gravitational wave signature, together...
The Einstein Telescope (ET) is going to bring a revolution for the future of multimessenger astrophy...
Context. Gravitational wave (GW) astronomy has rapidly reached maturity, becoming a fundamental obse...