Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in LIGO and Virgo detectors when black-hole spins are aligned with the orbital angular momentum and extremal. For such systems, we extend the effective-one-body inspiral-merger-ringdown waveforms to generic mass ratios and spins calibrating them to 38 numerical-relativity nonprecessing waveforms produced by the SXS Collaboration. The numerical-relativity simulations span mass ratios from 1 to 8, spin magnitudes up to 98% of extremality, and last for 40 to 60 gravitational-wave cycles. When the total mass of the binary is between 20Msun and 200Msun, the effective-one-body nonprecessing (dominant mode) waveforms have overlaps above 99% (using the a...
We present an accurate approximation of the full gravitational radiation waveforms generated in the ...
International audienceAs gravitational-wave detectors become more sensitive and broaden their freque...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a5, vpole, a...
Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in L...
We improve the accuracy of the effective-one-body (EOB) waveforms that were employed during the firs...
In Ref. [1], the properties of the first gravitational wave detected by LIGO, GW150914, were measure...
We present the first attempt at calibrating the effective-one-body (EOB) model to accurate numerical...
We present the first attempt at calibrating the effective-one-body (EOB) model to accurate numerical...
This paper presents a tunable effective-one-body (EOB) model for black-hole (BH) binaries of arbitra...
We calibrate the effective-one-body (EOB) model to an accurate numerical simulation of an equal-mass...
We calibrate an effective-one-body (EOB) model to numerical-relativity simulations of mass ratios 1,...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
We present an accurate approximation of the full gravitational radiation waveforms generated in the ...
International audienceAs gravitational-wave detectors become more sensitive and broaden their freque...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a5, vpole, a...
Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in L...
We improve the accuracy of the effective-one-body (EOB) waveforms that were employed during the firs...
In Ref. [1], the properties of the first gravitational wave detected by LIGO, GW150914, were measure...
We present the first attempt at calibrating the effective-one-body (EOB) model to accurate numerical...
We present the first attempt at calibrating the effective-one-body (EOB) model to accurate numerical...
This paper presents a tunable effective-one-body (EOB) model for black-hole (BH) binaries of arbitra...
We calibrate the effective-one-body (EOB) model to an accurate numerical simulation of an equal-mass...
We calibrate an effective-one-body (EOB) model to numerical-relativity simulations of mass ratios 1,...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
We present an accurate approximation of the full gravitational radiation waveforms generated in the ...
International audienceAs gravitational-wave detectors become more sensitive and broaden their freque...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a5, vpole, a...