Observations in Quantum Cosmology
arXiv:2306.14948 · doi:10.1088/1361-6382/acfa5b
Abstract
In this review, we focus on whether a canonical quantization of general relativity can produce testable predictions for cosmology. In particular, we examine how this approach can be used to model the evolution of primordial perturbations. This program of quantum geometrodynamics, first advocated by John Wheeler and Bryce DeWitt, has a straightforward classical limit, and it describes the quantum dynamics of all fields, gravitational and matter. In this context, in which a classical background metric is absent, it is necessary to discuss what constitutes an observation. We first address this issue in the classical theory and then turn to the quantum theory. We argue that predictions are relational, that is, relative to physical clocks and rods, and that they can be straightforwardly obtained in a perturbative approach with respect to Newton's constant, which serves as a coupling parameter. This weak-coupling expansion leads to a perturbative Hilbert space for quantum cosmology, and to corrections to the dynamics of quantum fields on a classical, fixed background metric. These corrections imply modifications of primordial power spectra, which may lead to signatures in the anisotropy spectrum of the Cosmic Microwave Background (CMB) radiation, for which we discuss concrete results. We conclude that the subject of quantum geometrodynamics, the oldest and most conservative approach to canonical quantum gravity, not only illuminates conceptual issues in quantum gravitation, but may also lead to observational prospects in cosmology and elsewhere.
Invited contribution to Classical and Quantum Gravity Focus Issue: Quantum Gravity Phenomenology in the Multi-Messenger Era: Challenges and Perspectives. v2: updated references, matches published version
References in corpus (29)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- CMBPol Mission Concept Study: Probing Inflation with CMB Polarization
- Singularity Theorems and Their Consequences
- Quantum Contributions to Cosmological Correlations II: Can These Corrections Become Large?
- 3+1 Formalism and Bases of Numerical Relativity
- Towards Spinfoam Cosmology
- The Real No-Boundary Wave Function in Lorentzian Quantum Cosmology
- The Superspace of Geometrodynamics
- Quantum-gravitational effects on gauge-invariant scalar and tensor perturbations during inflation: The slow-roll approximation
- Quantum Gravity in the Sky: Interplay between fundamental theory and observations
- Quantum geometrodynamics: whence, whither?
- Hybrid Quantum Cosmology: Combining Loop and Fock Quantizations
- Gauge invariant perturbations around symmetry reduced sectors of general relativity: applications to cosmology
- Reconstructing AdS/CFT
- Signatures of Quantum Gravity in a Born-Oppenheimer Context
- Unitarity of quantum-gravitational corrections to primordial fluctuations in the Born-Oppenheimer approach
- Stochastic gravitational-wave background in quantum gravity
- Quantum-gravity effects for excited states of inflationary perturbations
- Local spinfoam expansion in loop quantum cosmology
- The quantum Fokker-Planck equation of stochastic inflation
- Quantum Cosmology and the Evolution of Inflationary Spectra
- Study of the Inflationary Spectrum in the Presence of Quantum Gravity Corrections
- Observational consequences of Bianchi I spacetimes in loop quantum cosmology
- Renormalization group inspired autonomous equations for secular effects in de Sitter space
- A moment approach to compute quantum-gravity effects in the primordial universe
- Beyond semiclassical time
- Cosmic tangle: Loop quantum cosmology and CMB anomalies
- Big Steve and the State of the Universe
- John Archibald Wheeler: A Biographical Memoir
Cited by in corpus (9)
- Time and its arrow from quantum geometrodynamics?
- Visions in Quantum Gravity
- Classical and quantum cosmology of gravity's rainbow in Schutz's formalism
- 3+1 formalism of the minimally extended varying speed of light model
- Origin of time and probability in quantum cosmology
- Phase time and Ehrenfest's theorem in relativistic quantum mechanics and quantum gravity
- Does Cosmology require Hermiticity in Quantum Mechanics?
- What may come beyond the Wheeler-DeWitt approach?
- Effects of quantum corrections to Lorentzian vacuum transitions in the presence of gravity