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From the 1 of 8 linked papers with an AI index.

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20242026
most citedConservative Black Hole Scattering at Fifth Post-Minkowskian and Second Self-Force Order

1 citations · 1 across the 2 of their papers we have counts for

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8 papers

hep-th20261 cited

Conservative Black Hole Scattering at Fifth Post-Minkowskian and Second Self-Force Order

Mathias Driesse, Gustav Uhre Jakobsen, Gustav Mogull +4

The authors apply worldline quantum field theory to compute the conservative scattering angle and impulse for classical black‑hole collisions at fifth post‑Minkowskian (5PM) and se…

hep-th2026

Canonical Quantisation of Bound and Unbound WQFT

Riccardo Gonzo, Gustav Mogull

Using canonical quantisation, and eschewing the Schwinger-Keldysh path integral, we derive a version of the Worldline Quantum Field Theory (WQFT) formalism suitable for both scatte…

hep-th2026

Radiated Angular Momentum from Spinning Black Hole Scattering Trajectories

Gustav Mogull, Jan Plefka, Kathrin Stoldt

Using the worldline quantum field theory approach we derive solutions to the equations of motion for spinning massive bodies up to quadratic order in spins. At leading post-Minkows…

gr-qc2025

Highly accurate simulations of asymmetric black-hole scattering and cross validation of effective-one-body models

Oliver Long, Harald P. Pfeiffer, Alessandra Buonanno +6

The study of unbound binary-black-hole encounters provides a gauge-invariant approach to exploring strong-field gravitational interactions in two-body systems, which can subsequent…

hep-th2025

Unitarity and the On-Shell Action of Worldline Quantum Field Theory

Kays Haddad, Gustav Uhre Jakobsen, Gustav Mogull +1

We develop the on-shell action formalism within Worldline Quantum Field Theory (WQFT) to describe scattering of spinning compact bodies in General Relativity in the post-Minkowskia…

hep-th2025

Emergence of Calabi-Yau manifolds in high-precision black hole scattering

Mathias Driesse, Gustav Uhre Jakobsen, Albrecht Klemm +5

Using the worldline quantum field theory formalism, we compute the radiation-reacted impulse, scattering angle, radiated energy and recoil of a classical black hole (or neutron sta…