Minisuperspace models as infrared contributions
arXiv:1509.00640 · doi:10.1103/PhysRevD.93.125001
Abstract
A direct correspondence of quantum mechanics as a minisuperspace model for a self-interacting scalar quantum-field theory is established by computing, in several models, the infrared contributions to 1-loop effective potentials of Coleman--Weinberg type. A minisuperspace approximation rather than truncation is thereby obtained. By this approximation, the spatial averaging scale of minisuperspace models is identified with an infrared scale (but not a regulator or cut-off) delimiting the modes included in the minisuperspace model. Some versions of the models studied here have discrete space or modifications of the Hamiltonian expected from proposals of loop quantum gravity. They shed light on the question of how minisuperspace models of quantum cosmology can capture features of full quantum gravity. While it is shown that modifications of the Hamiltonian can well be described by minisuperspace truncations, some related phenomena such as signature change, confirmed and clarified here for modified scalar field theories, require at least a perturbative treatment of inhomogeneity beyond a strict minisuperspace model. The new methods suggest a systematic extension of minisuperspace models by a canonical effective formulation of perturbative inhomogeneity.
31 pages
References in corpus (21)
- Anomaly freedom in perturbative loop quantum gravity
- Spherically Symmetric Quantum Geometry: States and Basic Operators
- Loop quantum cosmology and inhomogeneities
- Quantum Gravity and Higher Curvature Actions
- Anomaly-free cosmological perturbations in effective canonical quantum gravity
- Effective Constraints for Quantum Systems
- Some implications of signature-change in cosmological models of loop quantum gravity
- The propagator in polymer quantum field theory
- Quantum cosmology from quantum gravity condensates: cosmological variables and lattice-refined dynamics
- Gauge invariant perturbations around symmetry reduced sectors of general relativity: applications to cosmology
- Relating loop quantum cosmology to loop quantum gravity: Symmetric sectors and embeddings
- Quantum cosmology of (loop) quantum gravity condensates: An example
- Effective constraints of loop quantum gravity
- The Dark Side of a Patchwork Universe
- Information loss, made worse by quantum gravity?
- Loop quantum cosmology from group field theory
- Background independent quantization and wave propagation
- On the Configuration Spaces of Homogeneous Loop Quantum Cosmology and Loop Quantum Gravity
- Non-linear (loop) quantum cosmology
- Perturbing a quantum gravity condensate
- Polymer inflation
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- Multi-field inflation from single-field models
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- Numerics of Bianchi type II and type IX spacetimes in effective loop quantum cosmology
- On the Role of Fiducial Structures in Minisuperspace Reduction and Quantum Fluctuations in LQC
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