Analyzing the influence of graviton fluctuations on the inflationary spectrum with a Kuchař-Torre clock
arXiv:2406.11756 · doi:10.1103/PhysRevD.110.086012
Abstract
This paper focuses on the search for a coherent and consistent formulation to describe quantum gravity corrections to Quantum Field Theory. We implement two fundamental ingredients discussed in previous analyses: on one hand, the construction of the Wentzel-Kramer-Brillouin and Born-Oppenheimer picture for the Wheeler-DeWitt theory of gravity and matter by using a reference fluid as physical clock; on the other hand, we explicitly separate in the metric field its own purely classical contribution from the quantum graviton degrees of freedom. This allows to derive, by the expansion in a Planckian parameter, a unitary theory properly evaluating the Quantum Field Theory modifications in the considered regime. More specifically, we recover at zero order the standard theory on curved space-time after averaging over the graviton sector. The physical corrections are induced at first order by (quantum) gravitons, thought as the slow-varying component of the system, as opposed to the fast quantum matter and reference fluid. The genuine contribution due to gravitons, non-factorizable into an independent phase, provides a coherent quantum gravity modification on Quantum Field Theory. We show this by determining the predicted inflationary spectrum during an exact de Sitter phase of the primordial Universe, finding a breaking of the scale invariant morphology even when the inflation potential is modelled by a cosmological constant term. Remarkably, the behavior of such non-scale-invariant spectrum overlaps predictions previously obtained in literature by neglecting non-unitary terms emerging in those formulations. In this respect, the present model provides a satisfactory regularization of such approaches, by virtue of a more realistic construction of the physical clock for the total (gravity + matter) quantum dynamics.
18 pages, no figures
References in corpus (10)
- Theory of cosmological perturbations in an anisotropic universe
- Quantum-gravitational effects on gauge-invariant scalar and tensor perturbations during inflation: The slow-roll approximation
- Signatures of Quantum Gravity in a Born-Oppenheimer Context
- Quantum Cosmology and the Evolution of Inflationary Spectra
- WKB Approaches to Restore Time in Quantum Cosmology: Predictions and Shortcomings
- Study of the Inflationary Spectrum in the Presence of Quantum Gravity Corrections
- Quantum Gravity and the Large Scale Anomaly
- Quantum gravity corrections to the matter dynamics in the presence of a reference fluid
- Planck scale inflationary spectra from quantum gravity
- QFT in Curved Spacetime from Quantum Gravity: proper WKB decomposition of the gravitational component
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