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Massive Spin-2 Scattering Amplitudes in Extra-Dimensional Theories

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abstract

In this paper we describe in detail the computation of the scattering amplitudes of massive spin-2 Kaluza-Klein excitations in a gravitational theory with a single compact extra dimension, whether flat or warped. These scattering amplitudes are characterized by intricate cancellations between different contributions: although individual contributions may grow as fast as ${\cal O}(s^5)$, the full results grow only as ${\cal O}(s)$. We demonstrate that the cancellations persist for all incoming and outgoing particle helicities and examine how truncating the computation to only include a finite number of intermediate states impacts the accuracy of the results. We also carefully assess the range of validity of the low energy effective Kaluza-Klein theory. In particular, for the warped case we demonstrate directly how an emergent low energy scale controls the size of the scattering amplitude, as conjectured by the AdS/CFT correspondence.

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hep-ph 1

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2025 1

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Radion Portal Freeze-Out Dark-Matter

hep-ph · 2025-07-28 · conditional · novelty 6.0

A radion from a stabilized warped extra dimension can explain dark matter through resonant annihilation, with indirect detection excluding 5 to 80 GeV masses.

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  • Radion Portal Freeze-Out Dark-Matter hep-ph · 2025-07-28 · conditional · none · ref 18 · internal anchor

    A radion from a stabilized warped extra dimension can explain dark matter through resonant annihilation, with indirect detection excluding 5 to 80 GeV masses.