most citedAnalytic structure of the high-energy gravitational amplitude: multi-H diagrams and classical 5PM logarithms

1 citations · 1 across the 3 of their papers we have counts for

collaborators

6 papers

gr-qc2026

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…

hep-th20261 cited

Analytic structure of the high-energy gravitational amplitude: multi-H diagrams and classical 5PM logarithms

Francesco Alessio, Vittorio Del Duca, Riccardo Gonzo +3

We investigate the high-energy, small-angle limit of two-body gravitational scattering. Using power counting arguments and dispersion relations in an effective field theory for the…

hep-th2026

Unexpected Symmetries of Kerr Black Hole Scattering

Dogan Akpinar, Graham R. Brown, Riccardo Gonzo +1

Motivated by the recent introduction of the Dirac bracket framework to compute spinning observables for the scattering of Kerr black holes, we initiate the study of conserved quant…

hep-th2026

Gravitational amplitudes in the Regge limit: waveforms, shock waves and unitarity cuts

Francesco Alessio, Vittorio Del Duca, Riccardo Gonzo +1

Motivated by recent progress in the high-energy description of gravitational scattering, we develop a systematic Regge-theory framework for amplitudes describing the scat…

gr-qc2025

The first law of binary black hole scattering

Riccardo Gonzo, Jack Lewis, Adam Pound

In the last decade, the first law of binary black hole mechanics played an important unifying role in the gravitational two-body problem. More recently, binary black hole scatterin…

hep-th2025

The spinning self-force EFT: 1SF waveform recursion relation and Compton scattering

Dogan Akpinar, Vittorio del Duca, Riccardo Gonzo

Building on recent approaches, we develop an effective field theory for the interaction of spinning particles modeling Kerr black holes within the gravitational self-force expansio…