In these lectures we describe how a theory of quantum gravity may be constructed in terms of a lattice formulation based on so-called causal dynamical triangulations (CDT). We discuss how the continuum limit can be obtained and how to define and measure diffeomorphism-invariant correlators. In four dimensions, which has our main interest, the lattice theory has an infrared limit which can be identified with de Sitter spacetime. We explain why this infrared property of the quantum spacetime is nontrivial and due to "entropic" effects encoded in the nonperturbative path integral measure. This makes the appearance of the de Sitter universe an example of true emergence of classicality from microscopic quantum laws. We also discuss nontrivial as...
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
The Causal Dynamical Triangulation (CDT) approach to quantum gravity is a lattice ap-proximation to ...
Asymptotic safety describes a scenario in which general relativity can be quantized as a conventiona...
Causal dynamical triangulations (CDT ) represent a lattice regularization of the sum over spacetime ...
We review some recent results from the causal dynamical triangulation (CDT) approach to quantum grav...
Lattice formulations of gravity can be used to study non-perturbative aspects of quantum gravity. Ca...
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
Previous work has shown that the macroscopic structure of the theory of quantum gravity defined by c...
The theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative theory of q...
We propose a theory of quantum gravity which formulates the quantum theory as a nonperturbative path...
AbstractThe theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative the...
In this paper we review how a background independent non-pertur- bative regularization of quantum gr...
We advocate lattice methods as the tool of choice to constructively define a backgroundindependent t...
We report on a nonperturbative formulation of quantum gravity defined via Euclidean dynamical triang...
The theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative theory of q...
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
The Causal Dynamical Triangulation (CDT) approach to quantum gravity is a lattice ap-proximation to ...
Asymptotic safety describes a scenario in which general relativity can be quantized as a conventiona...
Causal dynamical triangulations (CDT ) represent a lattice regularization of the sum over spacetime ...
We review some recent results from the causal dynamical triangulation (CDT) approach to quantum grav...
Lattice formulations of gravity can be used to study non-perturbative aspects of quantum gravity. Ca...
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
Previous work has shown that the macroscopic structure of the theory of quantum gravity defined by c...
The theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative theory of q...
We propose a theory of quantum gravity which formulates the quantum theory as a nonperturbative path...
AbstractThe theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative the...
In this paper we review how a background independent non-pertur- bative regularization of quantum gr...
We advocate lattice methods as the tool of choice to constructively define a backgroundindependent t...
We report on a nonperturbative formulation of quantum gravity defined via Euclidean dynamical triang...
The theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative theory of q...
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
The Causal Dynamical Triangulation (CDT) approach to quantum gravity is a lattice ap-proximation to ...
Asymptotic safety describes a scenario in which general relativity can be quantized as a conventiona...