We study binary systems in which a stellar mass compact object spirals into a massive black hole, known as extreme mass ratio inspirals, in scenarios with a new fundamental scalar field. Earlier work has shown that, in most interesting such scenarios and to leading order in the mass ratio, the massive black holes can be adequately approximated by the Kerr metric and the imprint of the scalar field on the waveform is fully controlled by the scalar charge of the stellar mass object. Here we use this drastic simplification in the inspiral modelling and consider eccentric equatorial orbits. We study how the scalar charge affects the orbital evolution for different eccentricities and different values of the black hole spin. We then determine how...
We present the first numerical calculation of the (local) metric perturbation produced by a small co...
Scientific analysis for the gravitational-wave detector LISA will require theoretical waveforms from...
Measurements of gravitational waves from the inspiral of a stellar-mass compact object into a massiv...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...
We study extreme mass ratio inspirals occurring in modified gravity, for which the system is modeled...
We study extreme mass ratio inspirals (EMRIs), during which a small body spirals into a supermassive...
We develop the first model for extreme mass-ratio inspirals (EMRIs) into a rotating massive black ho...
The famous no-hair hypothesis dictates that the multipole moments of Kerr black holes depend only on...
We derive the approximate, "analytic-kludge" (AK) waveforms for the inspiral of a charged stellar-ma...
We model the inspiral of a compact stellar-mass object into a massive nonrotating black hole includi...
Extreme mass ratio inspirals (EMRIs) -- systems with a compact object orbiting a much more massive (...
We use the continued fraction method to determine the eigenfrequencies associated with a scalar fiel...
Future space based gravitational wave detectors, such as the Laser Interferometer Space Antenna (LIS...
We study extreme mass-ratio binary systems in which a stellar mass compact object spirals into a sup...
We have studied extreme mass-ratio inspirals (EMRIs) in spacetimes containing a rotating black hole ...
We present the first numerical calculation of the (local) metric perturbation produced by a small co...
Scientific analysis for the gravitational-wave detector LISA will require theoretical waveforms from...
Measurements of gravitational waves from the inspiral of a stellar-mass compact object into a massiv...
We study binary systems in which a stellar mass compact object spirals into a massive black hole, kn...
We study extreme mass ratio inspirals occurring in modified gravity, for which the system is modeled...
We study extreme mass ratio inspirals (EMRIs), during which a small body spirals into a supermassive...
We develop the first model for extreme mass-ratio inspirals (EMRIs) into a rotating massive black ho...
The famous no-hair hypothesis dictates that the multipole moments of Kerr black holes depend only on...
We derive the approximate, "analytic-kludge" (AK) waveforms for the inspiral of a charged stellar-ma...
We model the inspiral of a compact stellar-mass object into a massive nonrotating black hole includi...
Extreme mass ratio inspirals (EMRIs) -- systems with a compact object orbiting a much more massive (...
We use the continued fraction method to determine the eigenfrequencies associated with a scalar fiel...
Future space based gravitational wave detectors, such as the Laser Interferometer Space Antenna (LIS...
We study extreme mass-ratio binary systems in which a stellar mass compact object spirals into a sup...
We have studied extreme mass-ratio inspirals (EMRIs) in spacetimes containing a rotating black hole ...
We present the first numerical calculation of the (local) metric perturbation produced by a small co...
Scientific analysis for the gravitational-wave detector LISA will require theoretical waveforms from...
Measurements of gravitational waves from the inspiral of a stellar-mass compact object into a massiv...