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Gravitational Radiation from Shockwave Scattering in the Self-Force EFT

Published 8 Sep 2026 in gr-qc and hep-th | (2609.09378v1)

Abstract: We investigate the high-energy collision of two spinless bodies within the Self-Force Effective Field Theory, taking one of the two bodies to be massless and highly energetic, such that it generates a gravitational shockwave (GSW) background. The GSW is perturbed by a second body, either massless or massive, satisfying respectively E2/E1≪1E_2/E_1\ll1 or m2/E1≪1m_2/E_1\ll1. Although the Self-Force expansion for shockwaves is frame-dependent, we choose a frame in which this EFT manifests its full power, obtaining results valid to all orders in Newton's constant that make the underlying resummation patterns manifest. Specifically, we push the expansion to 1SF order and conjecture the all-order vanishing of the so-called recoil operators in a given gauge. We obtain the exact graviton propagator on the shockwave background, matching previous results, and use it to compute the on-shell waveform at 1SF order in momentum space, specialising to the massless-massless collision. The waveform is computed to all orders in the Post-Minkowskian expansion, and its resummed form proved to vanish at the leading order in the super-Planckian regime. We use this result to prove the UV finiteness of the angular spectrum of radiated energy in the region collinear to the shockwave with energy E1E_1.

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