Coherent states, quantum gravity and the Born-Oppenheimer approximation, I: General considerations
arXiv:1504.02169 · doi:10.1063/1.4954228
Abstract
This article, as the first of three, aims at establishing the (time-dependent) Born-Oppenheimer approximation, in the sense of space adiabatic perturbation theory, for quantum systems constructed by techniques of the loop quantum gravity framework, especially the canonical formulation of the latter. The analysis presented here fits into a rather general framework, and offers a solution to the problem of applying the usual Born-Oppenheimer ansatz for molecular (or structurally analogous) systems to more general quantum systems (e.g. spin-orbit models) by means of space adiabatic perturbation theory. The proposed solution is applied to a simple, finite dimensional model of interacting spin systems, which serves as a non-trivial, minimal model of the aforesaid problem. Furthermore, it is explained how the content of this article, and its companion, affect the possible extraction of quantum field theory on curved spacetime from loop quantum gravity (including matter fields).
References in corpus (5)
- Stepping out of Homogeneity in Loop Quantum Cosmology
- The time-dependent Born-Oppenheimer approximation
- Rainbow metric from quantum gravity
- Coherent states, quantum gravity and the Born-Oppenheimer approximation, II: Compact Lie Groups
- Coherent states, quantum gravity and the Born-Oppenheimer approximation, III: Applications to loop quantum gravity
Cited by in corpus (9)
- Backreaction in Cosmology
- Observations in Quantum Cosmology
- WKB Approaches to Restore Time in Quantum Cosmology: Predictions and Shortcomings
- Coherent states, quantum gravity and the Born-Oppenheimer approximation, II: Compact Lie Groups
- Coherent states, quantum gravity and the Born-Oppenheimer approximation, III: Applications to loop quantum gravity
- Some physical implications of regularization ambiguities in SU(2) gauge-invariant loop quantum cosmology
- A gravitationally induced decoherence model using Ashtekar variables
- Rainbow metric from quantum gravity: anisotropic cosmology
- Loop quantum gravity with optimal control path integral, and application to black hole tunneling