paper

Second-order self-force calculation of the gravitational binding energy in compact binaries

arXiv:1908.07419 · doi:10.1103/PhysRevLett.124.021101

Abstract

Self-force theory is the leading method of modeling extreme-mass-ratio inspirals (EMRIs), key sources for the gravitational-wave detector LISA. It is well known that for an accurate EMRI model, second-order self-force effects are critical, but calculations of these effects have been beset by obstacles. In this letter we present the first implementation of a complete scheme for second-order self-force computations, specialized to the case of quasicircular orbits about a Schwarzschild black hole. As a demonstration, we calculate the gravitational binding energy of these binaries.

6 pages + supplemental material, 3 figures, revised title and two added references