arXiv:2407.16538·v2·High Energy Physics — Theory
Unitarization of the one-loop graviton-graviton scattering amplitudes and study of the graviball
J. A. Oller🇪🇸 · Marcela Peláez🇺🇾
Abstract
From the graviton-graviton scattering amplitudes calculated perturbatively in quantum gravity to the one-loop order, we develop further a formalism that allows one to calculate infrared-finite partial-wave amplitudes fulfilling perturbative unitarity. As a result of this process a parameter dubbed emerges that separate between infrared and typical external momenta. The resulting partial-wave amplitudes are next unitarized by employing the Inverse Amplitude Method and the algebraic- method. Then, the graviball resonance, with a similar pole position, is confirmed in the -wave partial-wave amplitude for all unitarization methods, also with respect to the unitarization of only the leading-order amplitude. Although the spectrum of the theory is independent of the specific value of , the requirement for a well-behaved unitarized effective field theory of gravity identifies the optimal range of for our next-to-leading-order calculations as . Briefly, we discuss the -wave scattering that is weaker than the wave scattering, repulsive and non-resonant for .
Comments: 12 pages, 3 figures. To match the published version. Additional clarifying discussions have been added to refine the approach