Unitarization from geometry

Author:

Bonifacio James,Hinterbichler Kurt

Abstract

Abstract We study the perturbative unitarity of scattering amplitudes in general dimensional reductions of Yang-Mills theories and general relativity on closed internal manifolds. For the tree amplitudes of the dimensionally reduced theory to have the expected high-energy behavior of the higher-dimensional theory, the masses and cubic couplings of the Kaluza-Klein states must satisfy certain sum rules that ensure there are nontrivial cancellations between Feynman diagrams. These sum rules give constraints on the spectra and triple overlap integrals of eigenfunctions of Laplacian operators on the internal manifold and can be proven directly using Hodge and eigenfunction decompositions. One consequence of these constraints is that there is an upper bound on the ratio of consecutive eigenvalues of the scalar Laplacian on closed Ricci-flat manifolds with special holonomy. This gives a sharp bound on the allowed gaps between Kaluza-Klein excitations of the graviton that also applies to Calabi-Yau compactifications of string theory.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Reference77 articles.

1. T. Kaluza, On the problem of unity in physics, Sitzungsber. Preuss. Akad. Wiss. Berlin1921 (1921) 966 [Int. J. Mod. Phys.D 27 (2018) 1870001] [arXiv:1803.08616] [INSPIRE].

2. O. Klein, Quantum theory and five-dimensional theory of relativity, Z. Phys.37 (1926) 895 [INSPIRE].

3. N. Arkani-Hamed, H. Georgi and M.D. Schwartz, Effective field theory for massive gravitons and gravity in theory space, Annals Phys.305 (2003) 96 [hep-th/0210184] [INSPIRE].

4. P. Creminelli, A. Nicolis, M. Papucci and E. Trincherini, Ghosts in massive gravity, JHEP09 (2005) 003 [hep-th/0505147] [INSPIRE].

5. C. de Rham and G. Gabadadze, Generalization of the Fierz-Pauli action, Phys. Rev.D 82 (2010) 044020 [arXiv:1007.0443] [INSPIRE].

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