Understanding the origin of merging binary black holes is currently one of the most pressing quests in astrophysics. We show that if isolated binary evolution dominates the formation mechanism of merging binary black holes, one should expect a correlation between the effective spin parameter, χeff, and the redshift of the merger, z, of binary black holes. This correlation comes from tidal spin-up systems preferentially forming and merging at higher redshifts due to the combination of weaker orbital expansion from low metallicity stars given their reduced wind mass loss rate, delayed expansion and have smaller maximal radii during the supergiant phase compared to stars at higher metallicity. As a result, these tightly bound systems merge wit...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We are living through the dawn of the era of gravitational wave astronomy. Our first glances through...
Understanding the origin of merging binary black holes is currently one of the most pressing quests ...
Understanding the origin of merging binary black holes is currently one of the most pressing quests ...
Context. After years of scientific progress, the origin of stellar binary black holes is still a gre...
© 2018 The Author(s). The possible formation mechanisms of massive close binary black holes (BHs) th...
Black holes are some of the most mysterious and fascinating objects that exist: with a gravitational...
The current interpretation of LIGO–Virgo–KAGRA data suggests that the primary mass function of mergi...
We study the expected spin misalignments of merging binary black holes formed in isolation by combin...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
All ten LIGO/Virgo binary black hole (BH-BH) coalescences reported following the O1/O2 runs have nea...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
All ten LIGO/Virgo binary black hole (BH-BH) coalescences reported following the O1/O2 runs have nea...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We are living through the dawn of the era of gravitational wave astronomy. Our first glances through...
Understanding the origin of merging binary black holes is currently one of the most pressing quests ...
Understanding the origin of merging binary black holes is currently one of the most pressing quests ...
Context. After years of scientific progress, the origin of stellar binary black holes is still a gre...
© 2018 The Author(s). The possible formation mechanisms of massive close binary black holes (BHs) th...
Black holes are some of the most mysterious and fascinating objects that exist: with a gravitational...
The current interpretation of LIGO–Virgo–KAGRA data suggests that the primary mass function of mergi...
We study the expected spin misalignments of merging binary black holes formed in isolation by combin...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
All ten LIGO/Virgo binary black hole (BH-BH) coalescences reported following the O1/O2 runs have nea...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
All ten LIGO/Virgo binary black hole (BH-BH) coalescences reported following the O1/O2 runs have nea...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We present results on the mass, spin, and redshift distributions with phenomenological population mo...
We are living through the dawn of the era of gravitational wave astronomy. Our first glances through...