Presented in this paper is the description of a Markov chain Monte Carlo (MCMC) routine for conducting coherent parameter estimation for interferometric gravitational wave observations of an inspiral of binary compact objects using multiple detectors. Data from several interferometers are processed, and all nine parameters (ignoring spin) associated with the binary system are inferred, including the distance to the source, the masses, and the location on the sky. The data is matched with time-domain inspiral templates that are 2.5 post-Newtonian (PN) in phase and 2.0 PN in amplitude. We designed and tuned an MCMC sampler so that it is able to efficiently find the posterior mode(s) in the parameter space and perform the stochastic integratio...
Ground-based gravitational wave laser interferometers (LIGO, GEO-600, Virgo, and Tama-300) have now ...
Inspiral signals from binary compact objects (black holes and neutron stars) are primary targets of ...
During the fifth science run of the Laser Interferometer Gravitational-wave Observatory (LIGO), sign...
Presented in this paper is the description of a Markov chain Monte Carlo (MCMC) routine for conducti...
Presented in this paper is the description of a Markov chain Monte Carlo (MCMC) routine for conducti...
In this paper we present a Bayesian parameter estimation method for the analysis of interferometric ...
Presented is a description of a Markov chain Monte Carlo (MCMC) parameter estimation routine for use...
Gravitational waves are predicted by general relativity theory. Their existence could be confirmed b...
The present operation of the ground-based network of gravitational-wave laser interferometers in enh...
Bayesian model selection provides a powerful and mathematically transparent framework to tackle hypo...
We present a Markov-chain Monte-Carlo (MCMC) technique to study the source parameters of gravitation...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
Ground-based gravitational wave laser interferometers (LIGO, GEO-600, Virgo, and Tama-300) have now ...
Inspiral signals from binary compact objects (black holes and neutron stars) are primary targets of ...
During the fifth science run of the Laser Interferometer Gravitational-wave Observatory (LIGO), sign...
Presented in this paper is the description of a Markov chain Monte Carlo (MCMC) routine for conducti...
Presented in this paper is the description of a Markov chain Monte Carlo (MCMC) routine for conducti...
In this paper we present a Bayesian parameter estimation method for the analysis of interferometric ...
Presented is a description of a Markov chain Monte Carlo (MCMC) parameter estimation routine for use...
Gravitational waves are predicted by general relativity theory. Their existence could be confirmed b...
The present operation of the ground-based network of gravitational-wave laser interferometers in enh...
Bayesian model selection provides a powerful and mathematically transparent framework to tackle hypo...
We present a Markov-chain Monte-Carlo (MCMC) technique to study the source parameters of gravitation...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
Ground-based gravitational wave laser interferometers (LIGO, GEO-600, Virgo, and Tama-300) have now ...
Inspiral signals from binary compact objects (black holes and neutron stars) are primary targets of ...
During the fifth science run of the Laser Interferometer Gravitational-wave Observatory (LIGO), sign...