The century of the incomplete revolution: searching for general relativistic quantum field theory
arXiv:hep-th/9910131 · doi:10.1063/1.533327
Abstract
In fundamental physics, this has been the century of quantum mechanics and general relativity. It has also been the century of the long search for a conceptual framework capable of embracing the astonishing features of the world that have been revealed by these two ``first pieces of a conceptual revolution''. I discuss the general requirements on the mathematics and some specific developments towards the construction of such a framework. Examples of covariant constructions of (simple) generally relativistic quantum field theories have been obtained as topological quantum field theories, in nonperturbative zero-dimensional string theory and its higher dimensional generalizations, and as spin foam models. A canonical construction of a general relativistic quantum field theory is provided by loop quantum gravity. Remarkably, all these diverse approaches have turn out to be related, suggesting an intriguing general picture of general relativistic quantum physics.
To appear in the Journal of Mathematical Physics 2000 Special Issue
References in corpus (2)
Cited by in corpus (14)
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- Towards the QFT on Curved Spacetime Limit of QGR. II: A Concrete Implementation
- Quantum theory's last challenge
- Self-dual gravity with topological terms
- Semiclassical Quantum Gravity: Statistics of Combinatorial Riemannian Geometries
- Loop Quantum Geometry: A primer
- Covariant description of parametrized nonrelativistic Hamiltonian systems
- Observables for the polarized Gowdy model
- Non-commutative Geometry from Perturbative Quantum Gravity in de Sitter spacetime
- A not so brief commentary on cosmological entropy bounds
- Relation of a Unified Quantum Field Theory of Spinors to the Structure of General Relativity
- Non-commutative coordinates from quantum gravity
- Symmetries at stationary Killing horizons