Predictions of quantum gravity in inflationary cosmology: effects of the Weyl-squared term
arXiv:2005.10293 · doi:10.1007/JHEP07(2020)211
Abstract
We derive the predictions of quantum gravity with fakeons on the amplitudes and spectral indices of the scalar and tensor fluctuations in inflationary cosmology. The action is plus the Weyl-squared term. The ghost is eliminated by turning it into a fakeon, that is to say a purely virtual particle. We work to the next-to-leading order of the expansion around the de Sitter background. The consistency of the approach puts a lower bound () on the mass of the fakeon with respect to the mass of the inflaton. The tensor-to-scalar ratio is predicted within less than an order of magnitude ( to the leading order in the number of -foldings ). Moreover, the relation is not affected by the Weyl-squared term. No vector and no other scalar/tensor degree of freedom is present.
39 pages, 1 figure; v2: minor changes, JHEP
References in corpus (6)
Cited by in corpus (7)
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- Inflation with Massive Spin-2 Ghosts
- Quantum gravitational signatures in next-generation gravitational wave detectors
- Quantum Gravity from the Composition of Spacetime Constructed through Generalised Proper Time
- Purely Virtual Particles in Quantum Gravity, Inflationary Cosmology and Collider Physics
- Diagrammar of physical and fake particles and spectral optical theorem