activity
20232026
most citedResummed energy loss in extreme-mass-ratio scattering using critical orbits

2 citations · 2 across the 3 of their papers we have counts for

collaborators
Showing gr-qcShow all

10 papers · 1 filter

gr-qc2026

Second-order Teukolsky calculations for nonspinning, quasicircular binaries

Benjamin Leather, Andrew Spiers, Adam Pound +4

Currently, the only second-order gravitational self-force calculations have been based on directly solving the perturbative Einstein equations in the Lorenz gauge. That method reli…

gr-qc2026

Dissection of a merger-ringdown waveform in the small-mass-ratio limit

Patrick Bourg, Lorenzo Küchler, Benjamin Leather +6

Work over the past two decades has unveiled the rich phenomenology of black hole binary mergers and subsequent ringdowns, involving a tapestry of quasinormal modes (QNMs), nonlinea…

gr-qc20262 cited

Resummed energy loss in extreme-mass-ratio scattering using critical orbits

Leor Barack, Riccardo Gonzo, Benjamin Leather +2

Motivated by recent efforts to bridge between weak-field and strong-field descriptions of black-hole binary dynamics, we develop a resummation scheme for post-Minkowskian radiative…

gr-qc2025

Inspiral-merger-ringdown waveforms with gravitational self-force results within the effective-one-body formalism

Benjamin Leather, Alessandra Buonanno, Maarten van de Meent

Gravitational self-force (GSF) theory is a strong-gravity perturbative approach to the relativistic two-body problem, primarily developed to model extreme-mass-ratio inspirals, whe…

gr-qc2025

Quadratic quasinormal modes at null infinity on a Schwarzschild spacetime

Patrick Bourg, Rodrigo Panosso Macedo, Andrew Spiers +3

The ringdown of perturbed black holes has been studied since the 1970s, but until recently, studies have focused on linear perturbations. There is now burgeoning interest in nonlin…

gr-qc2024

Gravitational self-force with hyperboloidal slicing and spectral methods

Benjamin Leather

We present a novel approach for calculating the gravitational self-force (GSF) in the Lorenz gauge, employing hyperboloidal slicing and spectral methods. Our method builds on the p…