We present and assess a Bayesian method to interpret gravitational wave signals from binary black holes. Our method directly compares gravitational wave data to numerical relativity simulations. This procedure bypasses approximations used in semi-analytical models for compact binary coalescence. In this work, we use only the full posterior parameter distribution for generic nonprecessing binaries, drawing inferences away from the set of NR simulations used, via interpolation of a single scalar quantity (the marginalized log-likelihood, $\ln {\cal L}$) evaluated by comparing data to nonprecessing binary black hole simulations. We also compare the data to generic simulations, and discuss the effectiveness of this procedure for generic sources...
The Advanced LIGO and Advanced Virgo gravitational-wave (GW) detectors will begin operation in the c...
We assess the statistical errors in estimating the parameters of nonspinning black hole binaries usi...
Only numerical relativity simulations can capture the full complexities of binary black hole mergers...
We present and assess a Bayesian method to interpret gravitational wave signals from binary black ho...
Gravitational wave astrophysics relies heavily on the use of matched filtering both to detect signal...
Gravitational wave astrophysics relies heavily on the use of matched filtering both to detect signal...
Gravitational-wave (GW) detectors have begun to observe coalescences of heavy black hole binaries (M...
We present the first surrogate model for gravitational waveforms from the coalescence of precessing ...
(Abridged): We assess the statistical errors in estimating the parameters of non-spinning black-hole...
Activities in data analysis and numerical simulation of gravitational waves have to date largely pro...
The third Gravitational-Wave Transient Catalog (GWTC-3) contains 90 binary coalescence candidates de...
Parameter estimates of GW150914 were obtained using Bayesian inference, based on three semi-analytic...
With the Advanced LIGO and Virgo ground-based detectors consistently identifying more compact binary...
A generic, noneccentric binary black hole (BBH) system emits gravitational waves (GWs) that are comp...
We characterize the expected statistical errors with which the parameters of black hole binaries can...
The Advanced LIGO and Advanced Virgo gravitational-wave (GW) detectors will begin operation in the c...
We assess the statistical errors in estimating the parameters of nonspinning black hole binaries usi...
Only numerical relativity simulations can capture the full complexities of binary black hole mergers...
We present and assess a Bayesian method to interpret gravitational wave signals from binary black ho...
Gravitational wave astrophysics relies heavily on the use of matched filtering both to detect signal...
Gravitational wave astrophysics relies heavily on the use of matched filtering both to detect signal...
Gravitational-wave (GW) detectors have begun to observe coalescences of heavy black hole binaries (M...
We present the first surrogate model for gravitational waveforms from the coalescence of precessing ...
(Abridged): We assess the statistical errors in estimating the parameters of non-spinning black-hole...
Activities in data analysis and numerical simulation of gravitational waves have to date largely pro...
The third Gravitational-Wave Transient Catalog (GWTC-3) contains 90 binary coalescence candidates de...
Parameter estimates of GW150914 were obtained using Bayesian inference, based on three semi-analytic...
With the Advanced LIGO and Virgo ground-based detectors consistently identifying more compact binary...
A generic, noneccentric binary black hole (BBH) system emits gravitational waves (GWs) that are comp...
We characterize the expected statistical errors with which the parameters of black hole binaries can...
The Advanced LIGO and Advanced Virgo gravitational-wave (GW) detectors will begin operation in the c...
We assess the statistical errors in estimating the parameters of nonspinning black hole binaries usi...
Only numerical relativity simulations can capture the full complexities of binary black hole mergers...