Implementing causality in the spin foam quantum geometry
arXiv:gr-qc/0210064 · doi:10.1016/S0550-3213(03)00378-X
Abstract
We analyse the classical and quantum geometry of the Barrett-Crane spin foam model for four dimensional quantum gravity, explaining why it has to be considering as a covariant realization of the projector operator onto physical quantum gravity states. We discuss how causality requirements can be consistently implemented in this framework, and construct causal transiton amplitudes between quantum gravity states, i.e. realising in the spin foam context the Feynman propagator between states. The resulting causal spin foam model can be seen as a path integral quantization of Lorentzian first order Regge calculus, and represents a link between several approaches to quantum gravity as canonical loop quantum gravity, sum-over-histories formulations, dynamical triangulations and causal sets. In particular, we show how the resulting model can be rephrased within the framework of quantum causal sets (or histories).
Latex,39 pages,8 figures, v3: minor changes, typos in some formulas corrected, comments added, discussion of results improved
References in corpus (9)
- Spacetime geometry from algebra: spin foam models for non-perturbative quantum gravity
- Discrete structures in gravity
- On choice of connection in loop quantum gravity
- Integrability for Relativistic Spin Networks
- A Ponzano-Regge model of Lorentzian 3-Dimensional gravity
- Barrett-Crane spin foam model from generalized BF-type action for gravity
- Positivity of Spin Foam Amplitudes
- Boundary terms in the Barrett-Crane spin foam model and consistent gluing
- Relating Covariant and Canonical Approaches to Triangulated Models of Quantum Gravity
Cited by in corpus (37)
- Ponzano-Regge model revisited III: Feynman diagrams and Effective field theory
- Graviton propagator from background-independent quantum gravity
- Asymptotics of lowest unitary SL(2,C) invariants on graphs
- Regge gravity from spinfoams
- The Feynman propagator for spin foam quantum gravity
- Discrete Symmetries in Covariant LQG
- Null Cones and Einstein's Equations in Minkowski Spacetime
- Timelike surfaces in Lorentz covariant loop gravity and spin foam models
- Causality and matter propagation in 3d spin foam quantum gravity
- Quantum causal histories in the light of quantum information
- Semiclassical regime of Regge calculus and spin foams
- A New Class of Group Field Theories for 1st Order Discrete Quantum Gravity
- The Complete Barrett-Crane Model and its Causal Structure
- Generalised group field theories and quantum gravity transition amplitudes
- Spin foam models as energetic causal sets
- A simple background-independent hamiltonian quantum model
- Two-point functions in (loop) quantum cosmology
- Group field theory and simplicial quantum gravity
- Holonomy Spin Foam Models: Boundary Hilbert spaces and Time Evolution Operators
- Coupling of spacetime atoms and spin foam renormalisation from group field theory
- The Construction of Spin Foam Vertex Amplitudes
- Spinfoam Fermions: PCT Symmetry, Dirac Determinant, and Correlation Functions
- Canonical path integral measures for Holst and Plebanski gravity. I. Reduced Phase Space Derivation
- Non-commutative Fourier transform for the Lorentz group via the Duflo map
- Spinfoam 2d quantum gravity and discrete bundles
- Scalar Cosmological Perturbations from Quantum Entanglement within Lorentzian Quantum Gravity
- Finiteness and Dual Variables for Lorentzian Spin Foam Models
- Finiteness of Lorentzian 10j symbols and partition functions
- A discrete, unitary, causal theory of quantum gravity
- Causal structure in spin-foams
- A note on the spinor construction of Spin Foam amplitudes
- Partial absence of cosine problem in 3d Lorentzian spin foams
- Causal structure and topology change in (2+1)-dimensional simplicial gravity
- Phase transitions in TGFT: Landau-Ginzburg analysis of the causally complete Lorentzian Barrett-Crane model
- Transition Amplitudes in 3D Quantum Gravity: Boundaries and Holography in the Coloured Boulatov Model
- Non-Ultralocality and Causality in the Relational Framework of Canonical Quantum Gravity
- Tensor networks for quantum causal histories