Roughly every 2–10 min, a pair of stellar-mass black holes merge somewhere in the Universe. A small fraction of these mergers are detected as individually resolvable gravitational-wave events by advanced detectors such as LIGO and Virgo. The rest contribute to a stochastic background. We derive the statistically optimal search strategy (producing minimum credible intervals) for a background of unresolved binaries. Our method applies Bayesian parameter estimation to all available data. Using Monte Carlo simulations, we demonstrate that the search is both “safe” and effective: it is not fooled by instrumental artifacts such as glitches and it recovers simulated stochastic signals without bias. Given realistic assumptions, we estimate that the...
Analyses of pulsar timing data have provided evidence for a stochastic gravitational wave background...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
Roughly every 2-10 min, a pair of stellar-mass black holes merge somewhere in the Universe. A small ...
International audienceWe estimate the stochastic gravitational wave (GW) background signal from the ...
The formation of merging binary black holes can occur through multiple astrophysical channels such a...
Ultralight bosons with masses in the range 10^(−13) eV ≤ m_b ≤ 10^(−12) eV can induce a superradia...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
We present an improved search for binary compact-object mergers using a network of ground-based grav...
Gravitational waves (GWs) are ripples in spacetime generated by accelerating masses, carrying away i...
© 2019 American Physical Society. American Physical Society. Gravitational-wave astronomy has been f...
Pulsar timing arrays (PTAs) might detect gravitational waves (GWs) from massive black hole (MBH) bin...
This paper presents a technique to search for supermassive black hole binaries (MBHBs) in the Sloan ...
The coalescence of pairs of massive black holes are the strongest and most promising sources for LIS...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
Analyses of pulsar timing data have provided evidence for a stochastic gravitational wave background...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
Roughly every 2-10 min, a pair of stellar-mass black holes merge somewhere in the Universe. A small ...
International audienceWe estimate the stochastic gravitational wave (GW) background signal from the ...
The formation of merging binary black holes can occur through multiple astrophysical channels such a...
Ultralight bosons with masses in the range 10^(−13) eV ≤ m_b ≤ 10^(−12) eV can induce a superradia...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
We present an improved search for binary compact-object mergers using a network of ground-based grav...
Gravitational waves (GWs) are ripples in spacetime generated by accelerating masses, carrying away i...
© 2019 American Physical Society. American Physical Society. Gravitational-wave astronomy has been f...
Pulsar timing arrays (PTAs) might detect gravitational waves (GWs) from massive black hole (MBH) bin...
This paper presents a technique to search for supermassive black hole binaries (MBHBs) in the Sloan ...
The coalescence of pairs of massive black holes are the strongest and most promising sources for LIS...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
Analyses of pulsar timing data have provided evidence for a stochastic gravitational wave background...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...
A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic ...