91 citations · 234 across the 3 of their papers we have counts for
5 papers
EMRI corrections to the angular velocity and redshift factor of a mass in circular orbit about a Kerr black hole
Abhay G. Shah, John L. Friedman, Tobias S. Keidl
This is the first of two papers on computing the self-force in a radiation gauge for a particle moving in circular, equatorial orbit about a Kerr black hole. In the EMRI (extreme-m…
Conservative, gravitational self-force for a particle in circular orbit around a Schwarzschild black hole in a Radiation Gauge
Abhay Shah, Tobias Keidl, John Friedman +2
This is the second of two companion papers on computing the self-force in a radiation gauge; more precisely, the method uses a radiation gauge for the radiative part of the metric…
Gravitational Self-force in a Radiation Gauge
Tobias S. Keidl, Abhay G. Shah, John L. Friedman +2
In this, the first of two companion papers, we present a method for finding the gravitational self-force in a modified radiation gauge for a particle moving on a geodesic in a Schw…
Analytic approximations, perturbation methods, and their applications
P. Jaranowski, K. G. Arun, L. Barack +33
The paper summarizes the parallel session B3 {\em Analytic approximations, perturbation methods, and their applications} of the GR18 conference. The talks in the session reported n…
On finding fields and self-force in a gauge appropriate to separable wave equations
Tobias S. Keidl, John L. Friedman, Alan G. Wiseman
Gravitational waves from the inspiral of a stellar-size black hole to a supermassive black hole can be accurately approximated by a point particle moving in a Kerr background. This…