International audienceThe recent detection of the binary black hole merger GW150914 demonstrates the existence of black holes more massive than previously observed in X-ray binaries in our Galaxy. This article explores different scenarios of black hole formation in the context of self-consistent cosmic chemical evolution models that simultaneously match observations of the cosmic star formation rate, optical depth to reionization and metallicity of the interstellar medium. This framework is used to calculate the mass distribution of merging black hole binaries and its evolution with redshift. We also study the implications of the black hole mass distribution for the stochastic gravitational wave background from mergers and from core-collaps...
International audienceThe coalescence of massive black hole binaries (BHBs) in galactic mergers is t...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
International audienceThe recent detection of the binary black hole merger GW150914 demonstrates the...
International audienceThe recent detection of the binary black hole merger GW150914 demonstrates the...
We investigate the impact of uncertainty in the metallicity-specific star formation rate over cosmic...
The cosmic merger rate density of black hole binaries (BHBs) can give us an essential clue to constr...
We investigate the impact of uncertainty in the metallicity-specific star formation rate over cosmic...
We investigate the impact of uncertainty in the metallicity-specific star formation rate over cosmic...
We compute the gravitational wave background (GWB) generated by a cosmological population of black h...
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
During the first three observing runs of the Advanced gravitational-wave detector network, the LIGO/...
International audienceThe coalescence of massive black hole binaries (BHBs) in galactic mergers is t...
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
International audienceThe coalescence of massive black hole binaries (BHBs) in galactic mergers is t...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
International audienceThe recent detection of the binary black hole merger GW150914 demonstrates the...
International audienceThe recent detection of the binary black hole merger GW150914 demonstrates the...
We investigate the impact of uncertainty in the metallicity-specific star formation rate over cosmic...
The cosmic merger rate density of black hole binaries (BHBs) can give us an essential clue to constr...
We investigate the impact of uncertainty in the metallicity-specific star formation rate over cosmic...
We investigate the impact of uncertainty in the metallicity-specific star formation rate over cosmic...
We compute the gravitational wave background (GWB) generated by a cosmological population of black h...
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
During the first three observing runs of the Advanced gravitational-wave detector network, the LIGO/...
International audienceThe coalescence of massive black hole binaries (BHBs) in galactic mergers is t...
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...
International audienceThe coalescence of massive black hole binaries (BHBs) in galactic mergers is t...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
The discovery of the gravitational-wave (GW) source GW150914 with the Advanced LIGO detectors provid...