In recent years, there have been significant advances in multi-messenger astronomy due to the discovery of the first, and so far only confirmed, gravitational wave event with a simultaneous electromagnetic (EM) counterpart, as well as improvements in numerical simulations, gravitational wave (GW) detectors, and transient astronomy. This has led to the exciting possibility of performing joint analyses of the GW and EM data, providing additional constraints on fundamental properties of the binary progenitor and merger remnant. Here, we present a new Bayesian framework that allows inference of these properties, while taking into account the systematic modeling uncertainties that arise when mapping from GW binary progenitor properties to photom...
Gravitational wave astronomy has established its role in measuring the equation of state governing c...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
With the increasing sensitivity of advanced gravitational wave detectors, the first joint detection ...
International audienceIn recent years, there have been significant advances in multimessenger astron...
In the new era of gravitational wave (GW) and multi-messenger astrophysics, the detection of a GW si...
We present a semi-analytic model for predicting kilonova light curves from the mergers of neutron st...
The combined detection of a binary neutron star merger in both gravitational waves (GWs) and electro...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
On the 17th of August, 2017 came the simultaneous detections of GW170817, a gravitational wave that ...
The discovery of GW170817 with gravitational waves (GWs) and electromagnetic (EM) radiation is promp...
The 2017 detection of a kilonova coincident with gravitational-wave emission has identified neutron ...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
Gravitational wave astronomy has established its role in measuring the equation of state governing c...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
With the increasing sensitivity of advanced gravitational wave detectors, the first joint detection ...
International audienceIn recent years, there have been significant advances in multimessenger astron...
In the new era of gravitational wave (GW) and multi-messenger astrophysics, the detection of a GW si...
We present a semi-analytic model for predicting kilonova light curves from the mergers of neutron st...
The combined detection of a binary neutron star merger in both gravitational waves (GWs) and electro...
In Advanced LIGO, detection and astrophysical source parameter estimation of the binary black hole m...
On the 17th of August, 2017 came the simultaneous detections of GW170817, a gravitational wave that ...
The discovery of GW170817 with gravitational waves (GWs) and electromagnetic (EM) radiation is promp...
The 2017 detection of a kilonova coincident with gravitational-wave emission has identified neutron ...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
Gravitational wave astronomy has established its role in measuring the equation of state governing c...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
With the increasing sensitivity of advanced gravitational wave detectors, the first joint detection ...