Poincare 2-group and quantum gravity
arXiv:1110.4694 · doi:10.1088/0264-9381/29/16/165003
Abstract
We show that General Relativity can be formulated as a constrained topological theory for flat 2-connections associated to the Poincaré 2-group. Matter can be consistently coupled to gravity in this formulation. We also show that the edge lengths of the spacetime manifold triangulation arise as the basic variables in the path-integral quantization, while the state-sum amplitude is an evaluation of a colored 3-complex, in agreement with the category theory results. A 3-complex amplitude for Euclidean quantum gravity is proposed.
v3: published version
References in corpus (7)
- LQG vertex with finite Immirzi parameter
- Zakopane lectures on loop gravity
- Topological Higher Gauge Theory - from BF to BFCG theory
- Hidden Quantum Gravity in 4d Feynman diagrams: Emergence of spin foams
- 2-categorical Poincare Representations and State Sum Applications
- Categorifying the Knizhnik-Zamolodchikov Connection via an Infinitesimal 2-Yang-Baxter Operator in the String Lie-2-Algebra
- Graviton propagator asymptotics and the classical limit of ELPR/FK spin foam models
Cited by in corpus (35)
- Effective Spin Foam Models for Four-Dimensional Quantum Gravity
- Effective Spin Foam Models for Lorentzian Quantum Gravity
- Teleparallel Gravity as a Higher Gauge Theory
- Discrete gravity dynamics from effective spin foams
- Higher Gauge Theories Based on 3-groups
- Quantum geometry from higher gauge theory
- Spin-cube Models of Quantum Gravity
- Solution to the Cosmological Constant Problem in a Regge Quantum Gravity Model
- A 2-categorical state sum model
- Hamiltonian Analysis for the Scalar Electrodynamics as 3BF Theory
- Canonical formulation of Poincare BFCG theory and its quantization
- Hamiltonian analysis of the BFCG theory for the Poincare 2-group
- Causal Dynamical Triangulations in the Spincube Model of Quantum Gravity
- Topological invariant of 4-manifolds based on a 3-group
- Hamiltonian analysis of the BFCG formulation of General Relativity
- Standard Model and 4-groups
- (2-)Drinfel'd Double and (2-)BF Theory
- Higher form Yang-Mills as higher BFYM theories
- Gauge symmetry of the 3BF theory for a generic Lie 3-group
- Poincare-Plebanski formulation of GR and dual simplicity constraints
- Discretization of 4d Poincaré BF theory: from groups to 2-groups
- Henneaux-Teitelboim gauge symmetry and its applications to higher gauge theories
- Gauge protected entanglement between gravity and matter
- 2-Drinfel'd double symmetry of the 4d Kitaev model
- Cosmological Constant in a Quantum Gravity Theory for a Piecewise-linear Spacetime
- Symmetry breaking mechanisms of the 3BF action for the Standard Model coupled to gravity
- Correspondence between 3BF and Einstein-Cartan formulations of quantum gravity
- Connecting Through Obstruction; Relating Gauge Gravity and String Theory
- Gravity-Matter Entanglement in Regge Quantum Gravity
- The 3BF theory as a TQFT
- Construction and examples of higher gauge theories
- Categorical generalization of BF theory coupled to gravity
- Polyhedron phase space using 2-groups: kappa-Poincare as a Poisson 2-group
- Categorical generalization of spinfoam models
- Quantum gravity and elementary particles from higher gauge theory