Emergent Semiclassical Time in Quantum Gravity. I. Mechanical Models
arXiv:gr-qc/0611007 · doi:10.1088/0264-9381/24/11/011
Abstract
Strategies intended to resolve the problem of time in quantum gravity by means of emergent or hidden timefunctions are considered in the arena of relational particle toy models. In situations with `heavy' and `light' degrees of freedom, two notions of emergent semiclassical WKB time emerge; these are furthermore equivalent to two notions of emergent classical `Leibniz--Mach--Barbour' time. I futhermore study the semiclassical approach, in a geometric phase formalism, extended to include linear constraints, and with particular care to make explicit those approximations and assumptions used. I propose a new iterative scheme for this in the cosmologically-motivated case with one heavy degree of freedom. I find that the usual semiclassical quantum cosmology emergence of time comes hand in hand with the emergence of other qualitatively significant terms, including back-reactions on the heavy subsystem and second time derivatives. I illustrate my analysis by taking it further for relational particle models with linearly-coupled harmonic oscillator potentials. As these examples are exactly soluble by means outside the semiclassical approach, they are additionally useful for testing the justifiability of some of the approximations and assumptions habitually made in the semiclassical approach to quantum cosmology. Finally, I contrast the emergent semiclassical timefunction with its hidden dilational Euler time counterpart.
References Updated
References in corpus (4)
Cited by in corpus (19)
- Problem of Time in Quantum Gravity
- Foundations of Relational Particle Dynamics
- New interpretation of variational principles for gauge theories. I. Cyclic coordinate alternative to ADM split
- Triangleland. I. Classical dynamics with exchange of relative angular momentum
- Records Theory
- Approaching the Problem of Time with a Combined Semiclassical-Records-Histories Scheme
- Triangleland. II. Quantum Mechanics of Pure Shape
- Classical dynamics on triangleland
- On the Semiclassical Approach to Quantum Cosmology
- Gauge Fixing and the Semiclassical Interpretation of Quantum Cosmology
- Unification of the conditional probability and semiclassical interpretations for the problem of time in quantum theory
- Relational Motivation for Conformal Operator Ordering in Quantum Cosmology
- Inflation and the semiclassical dynamics of a conformal scalar field
- Machian Classical and Semiclassical Emergent Time
- Quantum Cosmological Metroland Model
- Shape Space Methods for Quantum Cosmological Triangleland
- The Nature of Time: from a Timeless Hamiltonian Framework to Clock Time of Metrology
- Quantum Cosmological Relational Model of Shape and Scale in 1-d
- Relational Quadrilateralland. II. The Quantum Theory