Gravitational radiation offers a unique possibility to study the large-scale structure of the Universe, gravitational wave sources and propagation in a completely novel way. Given that gravitational wave maps contain a wealth of astrophysical and cosmological information, interpreting this signal requires a non-trivial multidisciplinary approach. In this work we present the complete computation of the signal produced by compact object mergers accounting for a detailed modelling of the astrophysical sources and for cosmological perturbations. We develop the CLASS_GWB code, which allows for the computation of the anisotropies of the astrophysical gravitational wave background, accounting for source and detector properties, as well as effects ...
The problem of the detection and mapping of a stochastic gravitational wave background (SGWB), eithe...
International audienceWe develop a detailed anisotropic model for the astrophysical gravitational-wa...
Astronomy with gravitational-wave observations is now a reality. Much of the theoretical research in...
Gravitational radiation offers a unique possibility to study the large-scale structure of the Univer...
Gravitational radiation offers a unique possibility to study the large-scale structure of the Univer...
The anisotropies of the Cosmological Gravitational Wave Background (CGWB) retain information about t...
A future detection of the stochastic gravitational wave background (SGWB) with gravitational wave (G...
International audienceThis article explores the properties (amplitude and shape) of the angular powe...
The stochastic gravitational wave background (SGWB) is expected to be a key observable for gravitati...
We present the first predictions for the angular power spectrum of the astrophysical gravitational w...
Abstract The detection of gravitational waves (GWs) provides a powerful tool to constrain the cosmol...
The problem of the detection and mapping of a stochastic gravitational wave background (SGWB), eithe...
International audienceWe develop a detailed anisotropic model for the astrophysical gravitational-wa...
Astronomy with gravitational-wave observations is now a reality. Much of the theoretical research in...
Gravitational radiation offers a unique possibility to study the large-scale structure of the Univer...
Gravitational radiation offers a unique possibility to study the large-scale structure of the Univer...
The anisotropies of the Cosmological Gravitational Wave Background (CGWB) retain information about t...
A future detection of the stochastic gravitational wave background (SGWB) with gravitational wave (G...
International audienceThis article explores the properties (amplitude and shape) of the angular powe...
The stochastic gravitational wave background (SGWB) is expected to be a key observable for gravitati...
We present the first predictions for the angular power spectrum of the astrophysical gravitational w...
Abstract The detection of gravitational waves (GWs) provides a powerful tool to constrain the cosmol...
The problem of the detection and mapping of a stochastic gravitational wave background (SGWB), eithe...
International audienceWe develop a detailed anisotropic model for the astrophysical gravitational-wa...
Astronomy with gravitational-wave observations is now a reality. Much of the theoretical research in...