The effects of LIGO detector noise on a 15-dimensional Markov-chain Monte-Carlo analysis of gravitational-wave signals
arXiv:0912.3746 · doi:10.1088/0264-9381/27/11/114009
Abstract
Gravitational-wave signals from inspirals of binary compact objects (black holes and neutron stars) are primary targets of the ongoing searches by ground-based gravitational-wave (GW) interferometers (LIGO, Virgo, and GEO-600). We present parameter-estimation results from our Markov-chain Monte-Carlo code SPINspiral on signals from binaries with precessing spins. Two data sets are created by injecting simulated GW signals into either synthetic Gaussian noise or into LIGO detector data. We compute the 15-dimensional probability-density functions (PDFs) for both data sets, as well as for a data set containing LIGO data with a known, loud artefact ("glitch"). We show that the analysis of the signal in detector noise yields accuracies similar to those obtained using simulated Gaussian noise. We also find that while the Markov chains from the glitch do not converge, the PDFs would look consistent with a GW signal present in the data. While our parameter-estimation results are encouraging, further investigations into how to differentiate an actual GW signal from noise are necessary.
11 pages, 2 figures, NRDA09 proceedings
References in corpus (10)
- Search for Gravitational Waves from Low Mass Binary Coalescences in the First Year of LIGO's S5 Data
- Gravitational-Wave Astronomy with Inspiral Signals of Spinning Compact-Object Binaries
- Parameter estimation of spinning binary inspirals using Markov-chain Monte Carlo
- Constraining population synthesis models via empirical binary compact object merger and supernovae rates
- Binary black hole spectroscopy
- Coherent Bayesian inference on compact binary inspirals using a network of interferometric gravitational wave detectors
- A Bayesian approach to the follow-up of candidate gravitational wave signals
- Bayesian inference on compact binary inspiral gravitational radiation signals in interferometric data
- Degeneracies in Sky Localisation Determination from a Spinning Coalescing Binary through Gravitational Wave Observations: a Markov-Chain Monte-Carlo Analysis for two Detectors
- Assigning confidence to inspiral gravitational wave candidates with Bayesian model selection
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