A recent study has shown that redshift information can be directly extracted from gravitational wave sources. This can be done by exploiting the tidal phasing contributions to the waveform during the inspiral phase of binary neutron stars coalescences. The original study investigated the viability of this idea in the context of the Einstein Telescope using a Fisher Matrix approach and in this paper, we further explore this idea using realistic simulations and Bayesian inference techniques. We find that the fractional accuracy with which the redshift can be measured is in the order of tens of percent, in agreement with Fisher Matrix predictions. Moreover, no significant bias is found. We conclude that, when tidal phasing contributions are in...
International audienceThe observation of binary neutron star merger GW170817, along with its optical...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
One of the main targets for ground-based gravitational wave (GW) detectors such as Advanced LIGO (La...
A recent study has shown that redshift information can be directly extracted from gravitational wave...
A recent study has shown that redshift information can be directly extracted from gravitational wave...
Inspiraling compact binaries as standard sirens will become an invaluable tool for cosmology when we...
Inspiraling compact binaries as standard sirens will become an invaluable tool for cosmology when we...
Gravitational waves emitted during the coalescence of binary neutron star systems are self-calibrati...
Detection of gravitational waves from the inspiral phase of binary neutron star coalescence will all...
We investigate a novel approach to measuring the Hubble constant using gravitational-wave (GW) signa...
Fisher matrix and related studies have suggested that, with second-generation gravitational-wave det...
Third generation (3G) gravitational-wave detectors will observe thousands of coalescing neutron star...
Finite-size effects on the gravitational wave signal from a neutron star merger typically manifest a...
Fisher matrix and related studies have suggested that, with second-generation gravitational-wave det...
Precision cosmology is crucial to understand the different energy components in the Universe and the...
International audienceThe observation of binary neutron star merger GW170817, along with its optical...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
One of the main targets for ground-based gravitational wave (GW) detectors such as Advanced LIGO (La...
A recent study has shown that redshift information can be directly extracted from gravitational wave...
A recent study has shown that redshift information can be directly extracted from gravitational wave...
Inspiraling compact binaries as standard sirens will become an invaluable tool for cosmology when we...
Inspiraling compact binaries as standard sirens will become an invaluable tool for cosmology when we...
Gravitational waves emitted during the coalescence of binary neutron star systems are self-calibrati...
Detection of gravitational waves from the inspiral phase of binary neutron star coalescence will all...
We investigate a novel approach to measuring the Hubble constant using gravitational-wave (GW) signa...
Fisher matrix and related studies have suggested that, with second-generation gravitational-wave det...
Third generation (3G) gravitational-wave detectors will observe thousands of coalescing neutron star...
Finite-size effects on the gravitational wave signal from a neutron star merger typically manifest a...
Fisher matrix and related studies have suggested that, with second-generation gravitational-wave det...
Precision cosmology is crucial to understand the different energy components in the Universe and the...
International audienceThe observation of binary neutron star merger GW170817, along with its optical...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
One of the main targets for ground-based gravitational wave (GW) detectors such as Advanced LIGO (La...