Recent measurements of gravitational-wave ringdown following the merger of binary black holes raise the prospect of precision black hole spectroscopy in the near future. To perform the most sensitive tests of the nature of black holes using ringdown measurements, it is critical to compute the deviations to the spectrum of black holes in particular extensions of relativity. These spectral shifts are also needed to interpret any violations of the predictions of relativity that may be detected during ringdown. Here we present a first step towards computing the shifts to the spectrum of Kerr black holes with arbitrary spins, by deriving a modified Teukolsky equation governing the perturbations of black holes in theories beyond GR. Our approach ...
We analyze gravitational-wave data from the first LIGO detection of a binary black-hole merger (GW15...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
In modified theories of gravity, the potentials appearing in the Schr\"odinger-like equations that d...
In the post-merger phase of a black hole binary system, the remnant object is a perturbed black hole...
Detecting gravitational waves from coalescing compact binaries allows us to explore the dynamical, n...
The waveforms from binary black hole mergers include inspiral, merger and ringdown parts. Usually, t...
Black-hole spectroscopy is arguably the most promising tool to test gravity in extreme regimes and t...
Gravitational wave observations of the ringdown of the remnant black hole in a binary black hole coa...
It is possible to infer the mass and spin of the remnant black hole from binary black hole mergers b...
We discuss a new ringdown frequency mode for vacuum perturbations of the Kerr black hole. We evolve ...
One of the most promising strategies to test gravity in the strong-field, large curvature regime is ...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
It has been recently pointed out that nonlinear effects are necessary to model the ringdown stage of...
Gravitational waves from test masses bound to geodesic orbits of rotating black holes are simulated,...
The Kerr nature of a compact-object-coalescence remnant can be unveiled by observing multiple quasi-...
We analyze gravitational-wave data from the first LIGO detection of a binary black-hole merger (GW15...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
In modified theories of gravity, the potentials appearing in the Schr\"odinger-like equations that d...
In the post-merger phase of a black hole binary system, the remnant object is a perturbed black hole...
Detecting gravitational waves from coalescing compact binaries allows us to explore the dynamical, n...
The waveforms from binary black hole mergers include inspiral, merger and ringdown parts. Usually, t...
Black-hole spectroscopy is arguably the most promising tool to test gravity in extreme regimes and t...
Gravitational wave observations of the ringdown of the remnant black hole in a binary black hole coa...
It is possible to infer the mass and spin of the remnant black hole from binary black hole mergers b...
We discuss a new ringdown frequency mode for vacuum perturbations of the Kerr black hole. We evolve ...
One of the most promising strategies to test gravity in the strong-field, large curvature regime is ...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
It has been recently pointed out that nonlinear effects are necessary to model the ringdown stage of...
Gravitational waves from test masses bound to geodesic orbits of rotating black holes are simulated,...
The Kerr nature of a compact-object-coalescence remnant can be unveiled by observing multiple quasi-...
We analyze gravitational-wave data from the first LIGO detection of a binary black-hole merger (GW15...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
In modified theories of gravity, the potentials appearing in the Schr\"odinger-like equations that d...