The unprecedented range of second-generation gravitational-wave (GW) observatories calls for refining the predictions of potential sources and detection rates. The coalescence of double compact objects (DCOs)—i.e., neutron star–neutron star (NS–NS), black hole–neutron star (BH–NS), and black hole–black hole (BH–BH) binary systems—is the most promising source of GWs for these detectors. We compute detection rates of coalescing DCOs in second-generation GW detectors using the latest models for their cosmological evolution, and implementing inspiral-merger-ringdown gravitational waveform models in our signal-to-noise ratio calculations. We find that (1) the inclusion of the merger/ringdown portion of the signal does not significantly affect ra...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
We use a self-consistent Monte Carlo treatment of stellar dynamics to investigate black hole binarie...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
The unprecedented range of second-generation gravitational-wave (GW) observatories calls for refinin...
The unprecedented range of second-generation gravitational-wave (GW) observatories calls for refinin...
Merging compact binaries are the most viable and best-studied candidates for gravitational-wave (GW)...
We study the Galactic field population of double compact objects (DCOs; NS-NS, BH-NS, BH-BH binaries...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
The coalescence of compact binaries containing neutron stars or black holes is one of the most promi...
Double-black-hole binaries are among the most important sources of gravitational radiation for groun...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
We present an improved search for binary compact-object mergers using a network of ground-based grav...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
We use a self-consistent Monte Carlo treatment of stellar dynamics to investigate black hole binarie...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
The unprecedented range of second-generation gravitational-wave (GW) observatories calls for refinin...
The unprecedented range of second-generation gravitational-wave (GW) observatories calls for refinin...
Merging compact binaries are the most viable and best-studied candidates for gravitational-wave (GW)...
We study the Galactic field population of double compact objects (DCOs; NS-NS, BH-NS, BH-BH binaries...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
The coalescence of compact binaries containing neutron stars or black holes is one of the most promi...
Double-black-hole binaries are among the most important sources of gravitational radiation for groun...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
We present an improved search for binary compact-object mergers using a network of ground-based grav...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...
We use a self-consistent Monte Carlo treatment of stellar dynamics to investigate black hole binarie...
We present the results from three gravitational-wave searches for coalescing compact binaries with c...