International audienceWe present an improved numerical relativity (NR) calibration of the new effective-one-body (EOB) model for coalescing nonprecessing spinning black hole binaries recently introduced by Damour and Nagar [Phys. Rev. D 90, 044018 (2014)PRVDAQ1550-799810.1103/PhysRevD.90.044018]. We do so by comparing the EOB predictions to both the phasing and the energetics provided by two independent sets of NR data covering mass ratios 1≤q≤9.989 and dimensionless spin range -0.95≤χ≤+0.994. One set of data is a subset of the Simulating eXtreme Spacetimes (SXS) catalog of public waveforms; the other set consists of new simulations obtained with the Llama code plus Cauchy characteristic evolution. We present the first systematic computatio...
We calibrate the effective-one-body (EOB) model to an accurate numerical simulation of an equal-mass...
We present an accurate approximation of the full gravitational radiation waveforms generated in the ...
Numerical relativity is an essential tool in studying the coalescence of binary black holes (BBHs). ...
We present an improved numerical relativity (NR) calibration of the new effective-one-body (EOB) mod...
We improve the accuracy of the effective-one-body (EOB) waveforms that were employed during the firs...
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...
International audienceWe explore the performance of an updated effective one-body (EOB) model for sp...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a5, vpole, a...
This paper presents a tunable effective-one-body (EOB) model for black-hole (BH) binaries of arbitra...
Using accurate numerical-relativity simulations of (nonspinning) black-hole binaries with mass ratio...
In Ref. [1], the properties of the first gravitational wave detected by LIGO, GW150914, were measure...
Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in L...
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 present an accurate approximation of the full gravitational radiation waveforms generated in the ...
Numerical relativity is an essential tool in studying the coalescence of binary black holes (BBHs). ...
We present an improved numerical relativity (NR) calibration of the new effective-one-body (EOB) mod...
We improve the accuracy of the effective-one-body (EOB) waveforms that were employed during the firs...
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...
International audienceWe explore the performance of an updated effective one-body (EOB) model for sp...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a5, vpole, a...
This paper presents a tunable effective-one-body (EOB) model for black-hole (BH) binaries of arbitra...
Using accurate numerical-relativity simulations of (nonspinning) black-hole binaries with mass ratio...
In Ref. [1], the properties of the first gravitational wave detected by LIGO, GW150914, were measure...
Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in L...
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 present an accurate approximation of the full gravitational radiation waveforms generated in the ...
Numerical relativity is an essential tool in studying the coalescence of binary black holes (BBHs). ...