Structure of Kaluza-Klein Graviton Scattering Amplitudes from Gravitational Equivalence Theorem and Double-Copy
Yan-Feng Hang, Hong-Jian He

TL;DR
This paper explores the structure of Kaluza-Klein graviton scattering amplitudes in 5d GR, establishing a gravitational equivalence theorem and extending double-copy methods to reveal energy cancellation mechanisms and new amplitude relations.
Contribution
It introduces a gravitational equivalence theorem for KK gravitons, extends double-copy techniques to massive KK modes, and uncovers novel energy cancellation mechanisms in high-energy amplitudes.
Findings
KK graviton amplitudes exhibit energy cancellations up to $O(E^{10})$
Double-copy method relates KK graviton and gauge boson amplitudes in 5d theories
New energy-cancellation mechanism identified in residual terms of GRET
Abstract
We study the structure of scattering amplitudes of the Kaluza-Klein (KK) gravitons and of the gravitational KK Goldstone bosons in the compactified 5d General Relativity (GR). We analyze the geometric "Higgs" mechanism for mass-generation of KK gravitons under compactification with a general gauge-fixing, which is free from the vDVZ discontinuity. Then, we formulate the Gravitational Equivalence Theorem (GRET) to connect the longitudinal KK graviton amplitudes to the KK Goldstone amplitudes, which is a manifestation of the geometric Higgs mechanism at -matrix level. We directly compute the tree-level KK Goldstone amplitudes which equal the longitudinal KK graviton amplitudes in the high energy limit. We further extend the double-copy method with color-kinematics duality to reconstruct the massive KK longitudinal graviton (Goldstone) amplitudes from the KK longitudinal gauge…
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