We investigate a novel approach to measuring the Hubble constant using gravitational-wave (GW) signals from compact binaries by exploiting the narrowness of the distribution of masses of the underlying neutron-star population. Gravitational-wave observations with a network of detectors will permit a direct, independent measurement of the distance to the source systems. If the redshift of the source is known, these inspiraling double-neutron-star binary systems can be used as standard sirens to extract cosmological information. Unfortunately, the redshift and the system chirp mass are degenerate in GW observations. Thus, most previous work has assumed that the source redshift is obtained from electromagnetic counterparts. However, we investi...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
One of the greatest limitations in astrophysics and cosmology is the distance measurement. Before th...
International audienceThe direct detection of gravitational waves by the LIGO/Virgo Collaboration ha...
Gravitational waves emitted during the coalescence of binary neutron star systems are self-calibrati...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
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...
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...
International audienceHere we show how $H_0$ can be derived purely from the gravitational waves (GW)...
Precision cosmology is crucial to understand the different energy components in the Universe and the...
The joint observation of the gravitational-wave and electromagnetic signal from the binary neutron-s...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
One of the greatest limitations in astrophysics and cosmology is the distance measurement. Before th...
International audienceThe direct detection of gravitational waves by the LIGO/Virgo Collaboration ha...
Gravitational waves emitted during the coalescence of binary neutron star systems are self-calibrati...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
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...
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...
International audienceHere we show how $H_0$ can be derived purely from the gravitational waves (GW)...
Precision cosmology is crucial to understand the different energy components in the Universe and the...
The joint observation of the gravitational-wave and electromagnetic signal from the binary neutron-s...
The observation of binary neutron star merger GW170817, along with its optical counterpart, provided...
One of the greatest limitations in astrophysics and cosmology is the distance measurement. Before th...
International audienceThe direct detection of gravitational waves by the LIGO/Virgo Collaboration ha...