4.7 Review

Nonperturbative quantum gravity

Journal

PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS
Volume 519, Issue 4-5, Pages 127-210

Publisher

ELSEVIER
DOI: 10.1016/j.physrep.2012.03.007

Keywords

Quantum gravity; Nonperturbative quantum field theory; Lattice field theory; Monte Carlo simulations; Exact renormalization group; Asymptotic safety; Lattice gravity

Funding

  1. Utrecht University
  2. Perimeter Institute
  3. Danish Research Council (FNU)
  4. Polish Ministry of Science and Higher Education [182/N-QGG/200810]
  5. Polish Ministry of Science [N N202 229137]

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Asymptotic safety describes a scenario in which general relativity can be quantized as a conventional field theory, despite being nonrenormalizable when expanding it around a fixed background geometry. It is formulated in the framework of the Wilsonian renormalization group and relies crucially on the existence of an ultraviolet fixed point, for which evidence has been found using renormalization group equations in the continuum. Causal Dynamical Triangulations (CDT) is a concrete research program to obtain a nonperturbative quantum field theory of gravity via a lattice regularization, and represented as a sum over spacetime histories. In the Wilsonian spirit one can use this formulation to try to locate fixed points of the lattice theory and thereby provide independent, nonperturbative evidence for the existence of a UV fixed point. We describe the formalism of CDT, its phase diagram, possible fixed points and the quantum geometries which emerge in the different phases. We also argue that the formalism may be able to describe a more general class of Horava-Lifshitz gravitational models. (C) 2012 Elsevier B.V. All rights reserved.

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