We develop the first model for extreme mass-ratio inspirals (EMRIs) into a rotating massive black hole driven by the gravitational self-force. Our model is based on an action angle formulation of the method of osculating geodesics for eccentric, equatorial (i.e., spin-aligned) motion in Kerr spacetime. The forcing terms are provided by an efficient spectral interpolation of the first-order gravitational self-force in the outgoing radiation gauge. We apply a near-identity (averaging) transformation to eliminate all dependence of the orbital phases from the equations of motion, while maintaining all secular effects of the first-order gravitational self-force at post-adiabatic order. This implies that the model can be evolved without having to...
In this work we present the first calculation of the gravitational self-force on generic bound geode...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...
We develop the first model for extreme mass-ratio inspirals (EMRIs) into a rotating massive black ho...
We model the inspiral of a compact stellar-mass object into a massive nonrotating black hole includi...
We model the inspiral of a compact stellar-mass object into a massive nonrotating black hole includi...
Future space based gravitational wave detectors, such as the Laser Interferometer Space Antenna (LIS...
This paper presents the first calculation of the gravitational self-force on a small compact object ...
We present an algorithm for calculating the metric perturbations and gravitational self-force for ex...
We present an algorithm for calculating the metric perturbations and gravitational self-force for ex...
We present an algorithm for calculating the metric perturbations and gravitational self-force for ex...
Scientific analysis for the gravitational wave detector LISA will require theoretical waveforms from...
Scientific analysis for the gravitational-wave detector LISA will require theoretical waveforms from...
We present a new, fast method for computing the inspiral trajectory and gravitational waves from ext...
In 2015, gravitational waves (GWs) were observed by direct detection for the very first time, over o...
In this work we present the first calculation of the gravitational self-force on generic bound geode...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...
We develop the first model for extreme mass-ratio inspirals (EMRIs) into a rotating massive black ho...
We model the inspiral of a compact stellar-mass object into a massive nonrotating black hole includi...
We model the inspiral of a compact stellar-mass object into a massive nonrotating black hole includi...
Future space based gravitational wave detectors, such as the Laser Interferometer Space Antenna (LIS...
This paper presents the first calculation of the gravitational self-force on a small compact object ...
We present an algorithm for calculating the metric perturbations and gravitational self-force for ex...
We present an algorithm for calculating the metric perturbations and gravitational self-force for ex...
We present an algorithm for calculating the metric perturbations and gravitational self-force for ex...
Scientific analysis for the gravitational wave detector LISA will require theoretical waveforms from...
Scientific analysis for the gravitational-wave detector LISA will require theoretical waveforms from...
We present a new, fast method for computing the inspiral trajectory and gravitational waves from ext...
In 2015, gravitational waves (GWs) were observed by direct detection for the very first time, over o...
In this work we present the first calculation of the gravitational self-force on generic bound geode...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...