We study the formation rate of binary black hole mergers formed through gravitational-wave emission between unbound, single black holes in globular clusters. While the formation of these binaries in very dense systems such as galactic nuclei has been well studied, we show here that this process can operate in lower-density stellar systems as well, forming binaries at a rate similar to other proposed pathways for creating eccentric mergers. Recent advances in post-Newtonian cluster dynamics indicate that a large fraction of dynamically assembled binary black holes merge inside their host clusters during weak and strong binary-single and binary-binary interactions, and that these systems may retain measurable eccentricities as they travel thr...
The dense environment of globular clusters (GCs) can facilitate the formation of binary black holes ...
Mergers between stellar-mass black holes (BHs) will be key sources of gravitational radiation for gr...
The recent discovery of gravitational waves (GWs) has opened new horizons for physics. Current and u...
Dynamical binaries are formed from unbound objects by multiple-body interactions in the centre of st...
The formation of compact stellar-mass binaries is a difficult, but interesting problem in astrophysi...
© 2019. The American Astronomical Society. All rights reserved. The detections of gravitational wave...
Hierarchical triples are expected to be produced by the frequent binary-mediated interactions in the...
We study the dynamics of stellar-mass black holes (BH) in star clusters with particular attention to...
Star clusters are the most common birthplace of massive stars, which form as members of binary or mu...
Mergers of black-hole binaries are expected to release large amounts of energy in the form of gravit...
We model the inspiral of globular clusters (GCs) towards a galactic nucleus harboring a supermassive...
f binary intermediate-mass black holes (IMBHs; with masses between 100 and 10(4) M-circle dot) form ...
We use a self-consistent Monte Carlo treatment of stellar dynamics to investigate black hole binarie...
Nuclear star clusters around massive black holes are expected to be abundant in stellar mass black h...
Binaries play an important role in the overall dynamic and evolution of nuclear star clusters. In th...
The dense environment of globular clusters (GCs) can facilitate the formation of binary black holes ...
Mergers between stellar-mass black holes (BHs) will be key sources of gravitational radiation for gr...
The recent discovery of gravitational waves (GWs) has opened new horizons for physics. Current and u...
Dynamical binaries are formed from unbound objects by multiple-body interactions in the centre of st...
The formation of compact stellar-mass binaries is a difficult, but interesting problem in astrophysi...
© 2019. The American Astronomical Society. All rights reserved. The detections of gravitational wave...
Hierarchical triples are expected to be produced by the frequent binary-mediated interactions in the...
We study the dynamics of stellar-mass black holes (BH) in star clusters with particular attention to...
Star clusters are the most common birthplace of massive stars, which form as members of binary or mu...
Mergers of black-hole binaries are expected to release large amounts of energy in the form of gravit...
We model the inspiral of globular clusters (GCs) towards a galactic nucleus harboring a supermassive...
f binary intermediate-mass black holes (IMBHs; with masses between 100 and 10(4) M-circle dot) form ...
We use a self-consistent Monte Carlo treatment of stellar dynamics to investigate black hole binarie...
Nuclear star clusters around massive black holes are expected to be abundant in stellar mass black h...
Binaries play an important role in the overall dynamic and evolution of nuclear star clusters. In th...
The dense environment of globular clusters (GCs) can facilitate the formation of binary black holes ...
Mergers between stellar-mass black holes (BHs) will be key sources of gravitational radiation for gr...
The recent discovery of gravitational waves (GWs) has opened new horizons for physics. Current and u...