Many gravitational wave sources will produce electromagnetic signals as they emit gravitational waves. An important example is binary neutron star mergers. The joint observations and discoveries of the electromagnetic signatures of these gravitational wave sources can produce substantial scientific benefits in physics, astrophysics and cosmology. To maximize the scientific outcomes of such gravitational events as much as possible, the detections of their electromagnetic signatures are necessary. The first detection of the inspiral signals from binary neutron stars by LIGO and VIRGO, and the observations of the associated electromagnetic counterparts throughout the electromagnetic spectrum have served an excellent example. These detections a...
Joint multimessenger observations with gravitational waves and electromagnetic (EM) data offer new i...
© 2016 The Authors. We investigate the prospects for joint low-latency gravitational wave (GW) detec...
International audienceNext-generation gravitational-wave detectors will provide unprecedented sensit...
Many gravitational wave sources will produce electromagnetic signals as they emit gravitational wave...
With the detection of a binary neutron star system and its corresponding electromagnetic counterpart...
Aims. Binary neutron stars are among the most promising candidates for joint gravitational-wave and ...
The prospects for the observation of electromagnetic emissions by gravitational wave sources first d...
Estimates of the source sky location for gravitational wave signals are likely span areas ranging up...
Within the next few years, Advanced LIGO and Virgo should detect gravitational waves from binary neu...
We present the first simulation addressing the prospects of finding an electromagnetic (EM) counterp...
Observations of an optical source coincident with gravitational wave emission detected from a binary...
Combined gravitational wave (GW) and electromagnetic (EM) observations of compact binary mergers sho...
Neutron star binaries, which are among the most promising sources for the direct detection of gravit...
The inspirals and mergers of compact binaries are among the most promising events for ground-based g...
Gravitational waves emitted during the coalescence of binary neutron star systems are self- calibrat...
Joint multimessenger observations with gravitational waves and electromagnetic (EM) data offer new i...
© 2016 The Authors. We investigate the prospects for joint low-latency gravitational wave (GW) detec...
International audienceNext-generation gravitational-wave detectors will provide unprecedented sensit...
Many gravitational wave sources will produce electromagnetic signals as they emit gravitational wave...
With the detection of a binary neutron star system and its corresponding electromagnetic counterpart...
Aims. Binary neutron stars are among the most promising candidates for joint gravitational-wave and ...
The prospects for the observation of electromagnetic emissions by gravitational wave sources first d...
Estimates of the source sky location for gravitational wave signals are likely span areas ranging up...
Within the next few years, Advanced LIGO and Virgo should detect gravitational waves from binary neu...
We present the first simulation addressing the prospects of finding an electromagnetic (EM) counterp...
Observations of an optical source coincident with gravitational wave emission detected from a binary...
Combined gravitational wave (GW) and electromagnetic (EM) observations of compact binary mergers sho...
Neutron star binaries, which are among the most promising sources for the direct detection of gravit...
The inspirals and mergers of compact binaries are among the most promising events for ground-based g...
Gravitational waves emitted during the coalescence of binary neutron star systems are self- calibrat...
Joint multimessenger observations with gravitational waves and electromagnetic (EM) data offer new i...
© 2016 The Authors. We investigate the prospects for joint low-latency gravitational wave (GW) detec...
International audienceNext-generation gravitational-wave detectors will provide unprecedented sensit...