Bouncing Unitary Cosmology I: Mini-Superspace General Solution
arXiv:1801.05789 · doi:10.1088/1361-6382/aaf823
Abstract
We offer a new proposal for cosmic singularity resolution based upon a quantum cosmology with a unitary bounce. This proposal is illustrated via a novel quantization of a mini-superspace model in which there can be superpositions of the cosmological constant. This possibility leads to a finite, bouncing unitary cosmology. Whereas the usual Wheeler--DeWitt cosmology generically displays pathological behaviour in terms of non-finite expectation values and non-unitary dynamics, the finiteness and unitarity of our model are formally guaranteed. For classically singular models with a massless scalar field and cosmological constant, we show that well-behaved quantum observables can be constructed and generic solutions to the universal Schrödinger equation are singularity-free. Generic solutions of our model displays novel features including: i) superpositions of values of the cosmological constant; ii) universal effective physics due to non-trivial self-adjoint extensions of the Hamiltonian; and iii) bound `Efimov universe' states for negative cosmological constant. The last feature provides a new platform for quantum simulation of the early universe. A companion paper provides detailed interpretation and analysis of particular cosmological solutions that display a cosmic bounce due to quantum gravitational effects, a well-defined FLRW limit far from the bounce, and a semi-classical turnaround point in the dynamics of the scalar field which resembles an effective inflationary epoch.
Version published in Classical Quantum Gravity. 21 pages, 4 figures
References in corpus (20)
- Quantum Nature of the Big Bang: Improved dynamics
- Quantum Nature of the Big Bang
- Observation of self-amplifying Hawking radiation in an analog black hole laser
- Loop quantum cosmology of k=1 FRW models
- Singularity Theorems and Their Consequences
- Quantum simulation of cosmic inflation in two-component Bose-Einstein condensates
- Einstein gravity as a 3D conformally invariant theory
- Conditional probabilities with Dirac observables and the problem of time in quantum gravity
- Large scale effective theory for cosmological bounces
- Singularities and Quantum Gravity
- Constraints and gauge transformations: Dirac's theorem is not always valid
- Statistical moments for classical and quantum dynamics: formalism and generalized uncertainty relations
- Conformal Superspace: the configuration space of general relativity
- Polymer quantization, singularity resolution and the 1/r^2 potential
- Degenerate Configurations, Singularities and the Non-Abelian Nature of Loop Quantum Gravity
- Wheeler-DeWitt quantization and singularities
- Bouncing Unitary Cosmology II: Mini-Superspace Phenomenology
- Gauge-invariant construction of quantum cosmology
- 2+1 gravity on the conformal sphere
- Scale Anomaly as the Origin of Time
Cited by in corpus (17)
- Singularity resolution depends on the clock
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- Towards a reduced phase space quantization in loop quantum cosmology with an inflationary potential
- Superpositions of the cosmological constant allow for singularity resolution and unitary evolution in quantum cosmology
- Bouncing Unitary Cosmology II: Mini-Superspace Phenomenology
- Crossing the phantom divide line as an effect of quantum transitions
- Relating dust reference models to conventional systems in manifestly gauge invariant perturbation theory
- Big Bang Singularity Resolution In Quantum Cosmology
- Quantum cosmology of a dynamical Lambda
- Black hole singularity resolution in unimodular gravity from unitarity
- Baryogenesis in cosmological models with symmetric and asymmetric quantum bounces
- Discrete fuzzy de Sitter cosmology
- Quantization of Einstein-aether Scalar field Cosmology
- Does Quantum Cosmology Predict the Age of the Universe?
- Analyzing quantum gravity spillover in the semiclassical regime
- Scalar Product for a Version of Minisuperspace Model with Grassmann Variables
- Time-covariant Schrödinger equation and invariant decay probability: The -Kantowski-Sachs universe