Copyright © 2018 by the Editors.All rights reserved. Gravitational waveforms radiated during the inspiral, plunge and merger stages of a small body moving in the equatorial plane of a Kerr black hole can be exploited to get unique, physical information on the strong-field regime. Such waveforms are constructed by numerically solving the Teukolsky equation in the time domain. When building the source term for the gravitational perturbations, one models the dissipation of orbital energy using the Teukolsky frequency-domain gravitational-wave flux for circular, equatorial orbits, down to the light-ring. The merger features of the Teukolsky waveforms have proven to be instrumental to extending the effective-one-body model of spinning, nonpreces...
In this thesis we have developed a new numerical waveform generation algorithm for particle perturb...
We analytically compute time domain gravitational waveforms produced in the final stages of extreme ...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from nonprecessi...
Copyright © 2018 by the Editors.All rights reserved. Gravitational waveforms radiated during the ins...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
In this thesis we have developed a new numerical waveform generation algorithm for particle perturb...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from non-precess...
In this thesis we have developed a new numerical waveform generation algorithm for particle perturb...
In this thesis we have developed a new numerical waveform generation algorithm for particle perturb...
We analytically compute time domain gravitational waveforms produced in the final stages of extreme ...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from nonprecessi...
Copyright © 2018 by the Editors.All rights reserved. Gravitational waveforms radiated during the ins...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
We numerically solve the Teukolsky equation in the time domain to obtain the gravitational-wave emis...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
Using the effective-one-body (EOB) formalism and a time-domain Teukolsky code, we generate inspiral,...
In this thesis we have developed a new numerical waveform generation algorithm for particle perturb...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from non-precess...
In this thesis we have developed a new numerical waveform generation algorithm for particle perturb...
In this thesis we have developed a new numerical waveform generation algorithm for particle perturb...
We analytically compute time domain gravitational waveforms produced in the final stages of extreme ...
In this paper we discuss the anatomy of frequency-domain gravitational-wave signals from nonprecessi...