By combining the numerical solution of the nonlinear hydrodynamics equations with the solution of the linear inhomogeneous Zerilli-Moncrief and Regge-Wheeler equations we investigate the properties of the gravitational radiation emitted during the axisymmetric accretion of matter onto a Schwarzschild black hole. The matter models considered include quadrupolar dust shells and thick accretion disks, permitting us to simulate situations which may be encountered at the end stages of stellar gravitational collapse or binary neutron star merger. We focus on the interference pattern appearing in the energy spectra of the emitted gravitational waves and on the amount of excitation of the quasi-normal modes of the accreting black hole. We show that...
We model the nonlinear generation of waveforms from an excited non-spinning black hole. The results ...
We propose two frequency-domain filters to analyze ringdown signals of binary black hole mergers. Th...
International audienceWe advocate for an alternative description of gravitational radiation from bla...
By combining the numerical solution of the nonlinear hydrodynamics equations with the solution of th...
By combining the numerical solution of the nonlinear hydrodynamics equations with the solution of th...
Distorted black holes radiate gravitational waves. In the so-called ringdown phase radiation is emit...
We formulate and calculate the second order quasi-normal modes (QNMs) of a Schwarzschild black hole ...
Gravitational-wave observations of black hole ringdowns are commonly used to characterize binary mer...
Gravitational perturbation theory on a black hole (BH) background predicts that the solution to the ...
This paper reports results from numerical simulations of the gravitational radiation emitted from no...
A perturbed black hole spacetime emits gravitational waves possessing quasinormal modes that are cha...
Computations of the strong field generation of gravitational waves by black hole processes produce w...
We study the Regge-Wheeler and Zerilli equations (RWE and ZE) at the `algebraically special frequenc...
The dynamics of relativistic stars and black holes are often studied in terms of the quasinormal mod...
Black holes play a fundamental role in modern physics. They have characteristic oscillation modes, c...
We model the nonlinear generation of waveforms from an excited non-spinning black hole. The results ...
We propose two frequency-domain filters to analyze ringdown signals of binary black hole mergers. Th...
International audienceWe advocate for an alternative description of gravitational radiation from bla...
By combining the numerical solution of the nonlinear hydrodynamics equations with the solution of th...
By combining the numerical solution of the nonlinear hydrodynamics equations with the solution of th...
Distorted black holes radiate gravitational waves. In the so-called ringdown phase radiation is emit...
We formulate and calculate the second order quasi-normal modes (QNMs) of a Schwarzschild black hole ...
Gravitational-wave observations of black hole ringdowns are commonly used to characterize binary mer...
Gravitational perturbation theory on a black hole (BH) background predicts that the solution to the ...
This paper reports results from numerical simulations of the gravitational radiation emitted from no...
A perturbed black hole spacetime emits gravitational waves possessing quasinormal modes that are cha...
Computations of the strong field generation of gravitational waves by black hole processes produce w...
We study the Regge-Wheeler and Zerilli equations (RWE and ZE) at the `algebraically special frequenc...
The dynamics of relativistic stars and black holes are often studied in terms of the quasinormal mod...
Black holes play a fundamental role in modern physics. They have characteristic oscillation modes, c...
We model the nonlinear generation of waveforms from an excited non-spinning black hole. The results ...
We propose two frequency-domain filters to analyze ringdown signals of binary black hole mergers. Th...
International audienceWe advocate for an alternative description of gravitational radiation from bla...