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April 29, 2026Journal of High Energy Physics2 citationsOpen Access

Resumming scattering amplitudes for waveforms

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KAKatsuki AokiACAndrea Cristofoli

Key Points

  • To compute non-perturbative scattering amplitudes and their implications for gravitational waveforms in two-body systems.
  • Developed a formalism for 5-point scattering amplitudes.
  • Applied it to gravitational waveforms in two-body dynamics.
  • Introduced effective potentials for graviton emission.
  • Related potentials to perturbative scattering at various orders.
  • Translated non-perturbative amplitudes into gravitational waveforms.
  • Computed gravitational waveforms for conservative dynamics along curved trajectories.
  • Extended effective field theory to radiative phenomena in gravitational interactions.
  • Derived source terms for gravitational waves from perturbative amplitudes.

Abstract

A bstract We develop a formalism to compute non-perturbative 5-point scattering amplitudes and apply it to gravitational waveforms in the two-body problem for arbitrary trajectories. Drawing inspiration from Feshbach’s projector formalism in nuclear physics, we introduce effective potentials governing graviton emission and relate them to perturbative scattering amplitudes at arbitrary order in the gravitational coupling and mass ratio. Once these potentials are determined, the corresponding non-perturbative amplitudes in the classical limit are obtained by iterative insertions and subsequently translated into gravitational waveforms using the KMOC formalism. As an application, we compute the gravitational waveform emitted by a conservative two-body dynamics moving along a generic, potentially highly bent, trajectory. Our formalism extends effective field theory matching of the gravitational two-body potential to radiative phenomena, enabling the extraction of gravitational-wave source terms directly from perturbative on-shell amplitudes.

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Cite This Study

Aoki et al. (2026) studied this question.

synapsesocial.com/papers/69f1545d879cb923c4944839https://doi.org/10.1007/jhep04(2026)198
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