We compute and analyze the gravitational waveform emitted to future null infinity by a system of two black holes in the large-mass-ratio limit. We consider the transition from the quasiadiabatic inspiral to plunge, merger, and ringdown. The relative dynamics is driven by a leading order in the mass ratio, 5PN-resummed, effective-one-body (EOB), analytic-radiation reaction. To compute the waveforms, we solve the Regge-Wheeler-Zerilli equations in the time-domain on a spacelike foliation, which coincides with the standard Schwarzschild foliation in the region including the motion of the small black hole, and is globally hyperboloidal, allowing us to include future null infinity in the computational domain by compactification. This method is c...
We study the coalescence of non-spinning binary black holes from the innermost stable circular orbit...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a(5), upsilo...
Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in L...
We compute and analyze the gravitational waveform emitted to future null infinity by a system of two...
We compute and analyze the gravitational waveform emitted to future null infinity by a system of two...
We discuss the properties of the effective-one-body (EOB) multipolar gravitational waveform emitted ...
We discuss the properties of the effective-one-body (EOB) multipolar gravitational waveform emitted ...
We derive an analytic phenomenological expression that predicts the final mass of the black-hole rem...
We discuss the transition from quasi-circular inspiral to plunge of a system of two nonrotating blac...
We describe the hyperboloidal compactification for Teukolsky equations in Kerr spacetime. We include...
We compare a recently derived, resummed high post-Newtonian accuracy effective-one-body (EOB) quadru...
We present an accurate approximation of the full gravitational radiation waveforms generated in the ...
Spectacular breakthroughs in numerical relativity now make it possible to compute spacetime dynamic...
We calibrate the effective-one-body (EOB) model to an accurate numerical simulation of an equal-mass...
We calibrate the effective-one-body (EOB) model to an accurate numerical simulation of an equal-mass...
We study the coalescence of non-spinning binary black holes from the innermost stable circular orbit...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a(5), upsilo...
Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in L...
We compute and analyze the gravitational waveform emitted to future null infinity by a system of two...
We compute and analyze the gravitational waveform emitted to future null infinity by a system of two...
We discuss the properties of the effective-one-body (EOB) multipolar gravitational waveform emitted ...
We discuss the properties of the effective-one-body (EOB) multipolar gravitational waveform emitted ...
We derive an analytic phenomenological expression that predicts the final mass of the black-hole rem...
We discuss the transition from quasi-circular inspiral to plunge of a system of two nonrotating blac...
We describe the hyperboloidal compactification for Teukolsky equations in Kerr spacetime. We include...
We compare a recently derived, resummed high post-Newtonian accuracy effective-one-body (EOB) quadru...
We present an accurate approximation of the full gravitational radiation waveforms generated in the ...
Spectacular breakthroughs in numerical relativity now make it possible to compute spacetime dynamic...
We calibrate the effective-one-body (EOB) model to an accurate numerical simulation of an equal-mass...
We calibrate the effective-one-body (EOB) model to an accurate numerical simulation of an equal-mass...
We study the coalescence of non-spinning binary black holes from the innermost stable circular orbit...
The effective-one-body (EOB) formalism contains several flexibility parameters, notably a(5), upsilo...
Gravitational waves emitted by black-hole binary systems have the highest signal-to-noise ratio in L...