Coalescences of binary neutron stars and/or black holes are amongst the most likely gravitational-wave signals to be observed in ground-based interferometric detectors. Apart from the astrophysical importance of their detection, they will also provide us with our very first empirical access to the genuine strong-field dynamics of general relativity (GR). We present a new framework based on Bayesian model selection aimed at detecting deviations from GR, subject to the constraints of the Advanced Virgo and LIGO detectors. The method tests the consistency of coefficients appearing in the waveform with the predictions made by GR, without relying on any specific alternative theory of gravity. The framework is suitable for low signal-to-noise rat...
The detection of gravitational waves by Advanced LIGO and Advanced Virgo provides an opportunity to ...
The direct detection of gravitational waves with upcoming second-generation gravitational wave obser...
The detection of gravitational waves by Advanced LIGO and Advanced Virgo provides an opportunity to ...
Coalescences of binary neutron stars and/or black holes are amongst the most likely gravitational-wa...
In this paper we elaborate on earlier work by the same authors in which a novel Bayesian inference f...
In this paper we elaborate on earlier work by the same authors in which a novel Bayesian inference f...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
Thanks to the recent discoveries of gravitational wave signals from binary black hole mergers by Adv...
Thanks to the recent discoveries of gravitational wave signals from binary black hole mergers by Adv...
We introduce a novel test of general relativity in the strong-field regime of a binary black hole co...
The second generation of gravitational-wave detectors is scheduled to start operations in 2015. Grav...
Gravitational wave astronomy has tremendous potential for studying extreme astrophysical phenomena a...
The detection of gravitational waves by Advanced LIGO and Advanced Virgo provides an opportunity to ...
The direct detection of gravitational waves with upcoming second-generation gravitational wave obser...
The detection of gravitational waves by Advanced LIGO and Advanced Virgo provides an opportunity to ...
Coalescences of binary neutron stars and/or black holes are amongst the most likely gravitational-wa...
In this paper we elaborate on earlier work by the same authors in which a novel Bayesian inference f...
In this paper we elaborate on earlier work by the same authors in which a novel Bayesian inference f...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
Second-generation interferometric gravitational-wave detectors, such as Advanced LIGO and Advanced V...
Thanks to the recent discoveries of gravitational wave signals from binary black hole mergers by Adv...
Thanks to the recent discoveries of gravitational wave signals from binary black hole mergers by Adv...
We introduce a novel test of general relativity in the strong-field regime of a binary black hole co...
The second generation of gravitational-wave detectors is scheduled to start operations in 2015. Grav...
Gravitational wave astronomy has tremendous potential for studying extreme astrophysical phenomena a...
The detection of gravitational waves by Advanced LIGO and Advanced Virgo provides an opportunity to ...
The direct detection of gravitational waves with upcoming second-generation gravitational wave obser...
The detection of gravitational waves by Advanced LIGO and Advanced Virgo provides an opportunity to ...