We review some recent attempts to extract information about the nature of quantum gravity, with and without matter, by quantum field theoretical methods. More specifically, we work within a covariant lattice approach where the individual space-time geometries are constructed from fundamental simplicial building blocks, and the path integral over geometries is approximated by summing over a class of piece-wise linear geometries. This method of ''''dynamical triangulations'' is very powerful in 2d, where the regularized theory can be solved explicitly, and gives us more insights into the quantum nature of 2d space-time than continuum methods are presently able to provide. It also allows us to establish an explicit relation between the Lorentz...
The non-perturbative, lattice field theory approach towards the quantization of Euclidean gravity is...
Just as for non-abelian gauge theories at strong coupling, discrete lattice methods are a natural to...
We advocate lattice methods as the tool of choice to constructively define a backgroundindependent t...
We review some recent attempts to extract information about the nature of quantum gravity, with and ...
We review some recent attempts to extract information about the nature of quantum gravity, with and...
One can try to define the theory of quantum gravity as the sum over geometries. In two dimensions th...
Fruitful ideas on how to quantize gravity are few and far between. In this paper, we give a complete...
We construct a well-defined regularized path integral for Lorentzian quantum gravity in terms of dyn...
No theory of four-dimensional quantum gravity exists as yet. In this situation the two-dimensional t...
We have recently introduced a discrete model of Lorentzian quantum gravity, given as a regularized n...
Abstract: A key insight used in developing the theory of Causal Dynamical Trian-gulations (CDTs) is ...
We formulate a non-perturbative lattice model of two-dimensional Lorentzian quantum gravity by perf...
The model of Lorentzian three-dimensional dynamical triangulations provides a non-perturbative defin...
We formulate a non-perturbative lattice model of two-dimensional Lorentzian quantum gravity by perfo...
We describe the motivation behind the recent formulation of a nonperturbative path integral for Lore...
The non-perturbative, lattice field theory approach towards the quantization of Euclidean gravity is...
Just as for non-abelian gauge theories at strong coupling, discrete lattice methods are a natural to...
We advocate lattice methods as the tool of choice to constructively define a backgroundindependent t...
We review some recent attempts to extract information about the nature of quantum gravity, with and ...
We review some recent attempts to extract information about the nature of quantum gravity, with and...
One can try to define the theory of quantum gravity as the sum over geometries. In two dimensions th...
Fruitful ideas on how to quantize gravity are few and far between. In this paper, we give a complete...
We construct a well-defined regularized path integral for Lorentzian quantum gravity in terms of dyn...
No theory of four-dimensional quantum gravity exists as yet. In this situation the two-dimensional t...
We have recently introduced a discrete model of Lorentzian quantum gravity, given as a regularized n...
Abstract: A key insight used in developing the theory of Causal Dynamical Trian-gulations (CDTs) is ...
We formulate a non-perturbative lattice model of two-dimensional Lorentzian quantum gravity by perf...
The model of Lorentzian three-dimensional dynamical triangulations provides a non-perturbative defin...
We formulate a non-perturbative lattice model of two-dimensional Lorentzian quantum gravity by perfo...
We describe the motivation behind the recent formulation of a nonperturbative path integral for Lore...
The non-perturbative, lattice field theory approach towards the quantization of Euclidean gravity is...
Just as for non-abelian gauge theories at strong coupling, discrete lattice methods are a natural to...
We advocate lattice methods as the tool of choice to constructively define a backgroundindependent t...