activity
20142023
most citedGravitational Self-Force Correction to the Innermost Stable Circular Equatorial Orbit of a Kerr Black Hole

92 citations · 328 across the 7 of their papers we have counts for

collaborators

7 papers

hep-ex20239 cited

Terrestrial Very-Long-Baseline Atom Interferometry: Workshop Summary

Sven Abend, Baptiste Allard, Iván Alonso +250

This document presents a summary of the 2023 Terrestrial Very-Long-Baseline Atom Interferometry Workshop hosted by CERN. The workshop brought together experts from around the world…

gr-qc2023

Adiabatic inspirals under electromagnetic radiation reaction on Kerr spacetime

Ethan J German, Kevin Cunningham, Visakan Balakumar +2

A compact body in orbit about a black hole loses orbital energy and angular momentum through radiation-reaction processes, inspiralling towards the black hole until a final plunge.…

gr-qc202250 cited

Comparing second-order gravitational self-force and effective one body waveforms from inspiralling, quasi-circular and nonspinning black hole binaries II: the large-mass-ratio case

Angelica Albertini, Alessandro Nagar, Adam Pound +4

We compare recently computed waveforms from second-order gravitational self-force (GSF) theory to those generated by a new, GSF-informed, effective one body (EOB) waveform model fo…

gr-qc202277 cited

Comparing second-order gravitational self-force, numerical relativity and effective one body waveforms from inspiralling, quasi-circular and nonspinning black hole binaries

Angelica Albertini, Alessandro Nagar, Adam Pound +4

We present the first systematic comparison between gravitational waveforms emitted by inspiralling, quasi-circular and nonspinning black hole binaries computed with three different…

gr-qc201430 cited

Self force on a scalar charge in Kerr spacetime: inclined circular orbits

Niels Warburton

Accurately modeling astrophysical extreme-mass-ratio-insprials requires calculating the gravitational self-force for orbits in Kerr spacetime. The necessary calculation techniques…

gr-qc201470 cited

Tidal invariants for compact binaries on quasi-circular orbits

Sam R. Dolan, Patrick Nolan, Adrian C. Ottewill +2

We extend the gravitational self-force approach to encompass `self-interaction' tidal effects for a compact body of mass on a quasi-circular orbit around a black hole of mass $…