Gravitational-wave astronomy has been a burgeoning field of research since the first detection of a merging black hole binary in 2015. As gravitational-wave detector sensitivity improves, our models must keep pace. The planned space-based detector LISA will be sensitive to new gravitational wave sources, such as extreme-mass-ratio inspirals (EMRIs). Precise extraction of EMRI parameters from LISA data will require highly accurate waveform templates. These templates need models which include, among other things, the dissipative piece of the second-order self-force in Kerr. This thesis formulates methods to help calculate the second-order self-force in Kerr. In the first part of the thesis, I develop a general framework for second-order calcu...
We produce gravitational waveforms for nonspinning compact binaries undergoing a quasicircular inspi...
Extreme-mass-ratio inspirals, in which a stellar-mass compact object spirals into a supermassive bla...
We present a practical method for calculating the gravitational self-force, as well as the electroma...
Self-force theory is the leading method of modeling extreme-mass-ratio inspirals (EMRIs), key source...
We derive an expression for the second-order gravitational self-force that acts on a self-gravitatin...
Extreme-mass-ratio inspirals (EMRIs) will be key sources for LISA. However, accurately extracting sy...
In 2015, gravitational waves (GWs) were observed by direct detection for the very first time, over o...
We present a new method designed to avoid numerical challenges that have impeded calculation of the ...
Ground-based detectors now regularly observe the merger of stellar-mass compact objects and their gr...
Inspirals of stellar-mass objects into massive black holes will be important sources for the space-b...
This project makes progress towards a first calculation of the second-order gravitational self-force...
International audienceWe produce gravitational waveforms for nonspinning compact binaries undergoing...
In this work we present the first calculation of the gravitational self-force on generic bound geode...
We produce gravitational waveforms for nonspinning compact binaries undergoing a quasicircular inspi...
We produce gravitational waveforms for nonspinning compact binaries undergoing a quasicircular inspi...
We produce gravitational waveforms for nonspinning compact binaries undergoing a quasicircular inspi...
Extreme-mass-ratio inspirals, in which a stellar-mass compact object spirals into a supermassive bla...
We present a practical method for calculating the gravitational self-force, as well as the electroma...
Self-force theory is the leading method of modeling extreme-mass-ratio inspirals (EMRIs), key source...
We derive an expression for the second-order gravitational self-force that acts on a self-gravitatin...
Extreme-mass-ratio inspirals (EMRIs) will be key sources for LISA. However, accurately extracting sy...
In 2015, gravitational waves (GWs) were observed by direct detection for the very first time, over o...
We present a new method designed to avoid numerical challenges that have impeded calculation of the ...
Ground-based detectors now regularly observe the merger of stellar-mass compact objects and their gr...
Inspirals of stellar-mass objects into massive black holes will be important sources for the space-b...
This project makes progress towards a first calculation of the second-order gravitational self-force...
International audienceWe produce gravitational waveforms for nonspinning compact binaries undergoing...
In this work we present the first calculation of the gravitational self-force on generic bound geode...
We produce gravitational waveforms for nonspinning compact binaries undergoing a quasicircular inspi...
We produce gravitational waveforms for nonspinning compact binaries undergoing a quasicircular inspi...
We produce gravitational waveforms for nonspinning compact binaries undergoing a quasicircular inspi...
Extreme-mass-ratio inspirals, in which a stellar-mass compact object spirals into a supermassive bla...
We present a practical method for calculating the gravitational self-force, as well as the electroma...