Invariant Class Operators in the Decoherent Histories Analysis of Timeless Quantum Theories
arXiv:gr-qc/0509013 · doi:10.1103/PhysRevD.73.024011
Abstract
The decoherent histories approach to quantum theory is applied to a class of reparametrization invariant models, which includes systems described by the Klein-Gordon equation, and by a minisuperspace Wheeler-DeWitt equation. A key step in this approach is the construction of class operators characterizing the questions of physical interest, such as the probability of the system entering a given region of configuration space without regard to time. In non-relativistic quantum mechanics these class operators are given by time-ordered products of projection operators. But in reparametrization invariant models, where there is no time, the construction of the class operators is more complicated, the main difficulty being to find operators which commute with the Hamiltonian constraint (and so respect the invariance of the theory). Here, inspired by classical considerations, we put forward a proposal for the construction of such class operators for a class of reparametrization-invariant systems. They consist of continuous infinite temporal products of Heisenberg picture projection operators. We investigate the consequences of this proposal in a number of simple models and also compare with the evolving constants method.
45 pages, RevTex. Version 2. Substantial rewriting of Section 9 correcting earlier errors
References in corpus (5)
- Relational time in generally covariant quantum systems: four models
- Life in an Energy Eigenstate: Decoherent Histories Analysis of a Model Timeless Universe
- Decoherent histories analysis of the relativistic particle
- Generalized Quantum Theory of Recollapsing Homogeneous Cosmologies
- Minisuperspace Models in Histories Theory
Cited by in corpus (18)
- Loop Quantum Cosmology: A Status Report
- Problem of Time in Quantum Gravity
- Probabilities in Quantum Cosmological Models: A Decoherent Histories Analysis Using a Complex Potential
- Consistent Probabilities in Wheeler-DeWitt Quantum Cosmology
- Consistent Histories in Quantum Cosmology
- Consistent probabilities in loop quantum cosmology
- Decoherent Histories Analysis of Minisuperspace Quantum Cosmology
- Approaching the Problem of Time with a Combined Semiclassical-Records-Histories Scheme
- Pitfalls of Path Integrals: Amplitudes for Spacetime Regions and the Quantum Zeno Effect
- The consistent histories approach to loop quantum cosmology
- Spacetime Coarse Grainings in the Decoherent Histories Approach to Quantum Theory
- Comparing Quantum Gravity Models: String Theory, Loop Quantum Gravity, and Entanglement gravity versus -QGR
- Quantum Zeno Effect in the Decoherent Histories
- Affine Histories in Quantum Gravity: Introduction and the Representation for a Cosmological Model
- Amplitudes for Spacetime Regions and the Quantum Zeno Effect: Pitfalls of Standard Path Integral Constructions
- Consistent histories of systems and measurements in spacetime
- Dynamical analysis of quantum matter bounces with dark sector mimickers
- Contrary Inferences for Classical Histories within the Consistent Histories Formulation of Quantum Theory