Mergers of compact-object binaries are one of the most powerful sources of gravitational waves (GWs) in the frequency range of second-generation ground-based GW detectors (advanced LIGO and Virgo). Dynamical simulations of young dense star clusters (SCs) indicate that ~27 per cent of all double compact-object binaries are members of hierarchical triple systems (HTs). In this paper, we consider 570 HTs composed of three compact objects (black holes or neutron stars) that formed dynamically in N-body simulations of young dense SCs. We simulate them for a Hubble time with a new code based on the Mikkola's algorithmic regularization scheme, including the 2.5 post-Newtonian term. We find that ~88 per cent of the simulated systems develop Kozai-L...
Recent detections of gravitational waves from mergers of neutron stars (NSs) and black holes (BHs) i...
Massive black hole binaries (MBHBs) are expected to form at the centre of merging galaxies during th...
We study the formation rate of binary black hole mergers formed through gravitational-wave emission ...
Mergers of compact-object binaries are one of the most powerful sources of gravitational waves (GWs)...
Mergers of compact-object binaries are one of the most powerful sources of gravitational waves (GWs)...
Hierarchical triples are expected to be produced by the frequent binary-mediated interactions in the...
Nuclear star clusters around massive black holes are expected to be abundant in stellar mass black h...
Kozai-Lidov (KL) oscillations can accelerate compact object mergers via gravitational wave (GW) radi...
Hierarchical triple-star systems are expected to form frequently via close binary–binary encounters ...
Nuclear star clusters around a central massive black hole (MBH) are expected to be abundant in stell...
We study the dynamics of stellar-mass black holes (BH) in star clusters with particular attention to...
We report on the population properties of compact binary mergers inferred from gravitational-wave ob...
Most, if not all, stars in the field are born in binary configurations or higher multiplicity system...
© 2019. The American Astronomical Society. All rights reserved. The detections of gravitational wave...
We study the orbital evolution of black hole (BH) binaries in quadruple systems, where the tertiary ...
Recent detections of gravitational waves from mergers of neutron stars (NSs) and black holes (BHs) i...
Massive black hole binaries (MBHBs) are expected to form at the centre of merging galaxies during th...
We study the formation rate of binary black hole mergers formed through gravitational-wave emission ...
Mergers of compact-object binaries are one of the most powerful sources of gravitational waves (GWs)...
Mergers of compact-object binaries are one of the most powerful sources of gravitational waves (GWs)...
Hierarchical triples are expected to be produced by the frequent binary-mediated interactions in the...
Nuclear star clusters around massive black holes are expected to be abundant in stellar mass black h...
Kozai-Lidov (KL) oscillations can accelerate compact object mergers via gravitational wave (GW) radi...
Hierarchical triple-star systems are expected to form frequently via close binary–binary encounters ...
Nuclear star clusters around a central massive black hole (MBH) are expected to be abundant in stell...
We study the dynamics of stellar-mass black holes (BH) in star clusters with particular attention to...
We report on the population properties of compact binary mergers inferred from gravitational-wave ob...
Most, if not all, stars in the field are born in binary configurations or higher multiplicity system...
© 2019. The American Astronomical Society. All rights reserved. The detections of gravitational wave...
We study the orbital evolution of black hole (BH) binaries in quadruple systems, where the tertiary ...
Recent detections of gravitational waves from mergers of neutron stars (NSs) and black holes (BHs) i...
Massive black hole binaries (MBHBs) are expected to form at the centre of merging galaxies during th...
We study the formation rate of binary black hole mergers formed through gravitational-wave emission ...