Conformal boundary conditions, loop gravity and the continuum
arXiv:1804.08643 · doi:10.1007/JHEP10(2018)089
Abstract
In this paper, we will make an attempt to clarify the relation between three-dimensional euclidean loop quantum gravity with vanishing cosmological constant and quantum field theory in the continuum. We will argue, in particular, that in three spacetime dimensions the discrete spectra for the geometric boundary observables that we find in loop quantum gravity can be understood from the quantisation of a conformal boundary field theory in the continuum without ever introducing spin networks or triangulations of space. At a technical level, the starting point is the Hamiltonian formalism for general relativity in regions with boundaries at finite distance. At these finite boundaries, we choose specific conformal boundary conditions (the boundary is a minimal surface) that are derived from a boundary field theory for an SU(2) boundary spinor, which is minimally coupled to the spin connection in the bulk. The resulting boundary equations of motion define a conformal field theory with vanishing central charge. We will quantise this boundary field theory and show that the length of a one-dimensional cross section of the boundary has a discrete spectrum. In addition, we will introduce a new class of coherent states, study the quasi-local observables that generate the quasi-local Virasoro algebra and discuss some strategies to evaluate the partition function of the theory.
28 pages
References in corpus (9)
- Are the spectra of geometrical operators in Loop Quantum Gravity really discrete?
- One-loop partition function of three-dimensional flat gravity
- Fock representation of gravitational boundary modes and the discreteness of the area spectrum
- Characters of the BMS Group in Three Dimensions
- CFT/Gravity Correspondence on the Isolated Horizon
- Quasi-local holographic dualities in non-perturbative 3d quantum gravity
- Flux formulation of loop quantum gravity: Classical framework
- Cosmological evolution as squeezing: a toy model for group field cosmology
- Quantum gravity in three dimensions, Witten spinors and the quantisation of length
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