We investigate the impact of topology on the phase structure of fourdimensional Causal Dynamical Triangulations (CDT). Using numerical Monte Carlo simulations we study CDT with toroidal spatial topology. We confirm existence of all four distinct phases of quantum geometry earlier observed in CDT with spherical spatial topology. We plot the toroidal CDT phase diagram and find that it looks very similar to the case of the spherical spatial topology
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
Contains fulltext : 239194.pdf (Publisher’s version ) (Open Access
The theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative theory of q...
Abstract We investigate the impact of topology on the phase structure of fourdimensional Causal Dyna...
Causal Dynamical Triangulations (CDT) is a non-perturbative lattice approach to quantum gravity wher...
Causal Dynamical Triangulations (CDT) is a lattice formulation of quantum gravity, suitable for Mont...
Lattice formulations of gravity can be used to study non-perturbative aspects of quantum gravity. Ca...
Causal Dynamical Triangulations (CDT) is a lattice formulation of quantum gravity, suitable for Mont...
We investigate the geometry of a quantum universe with the topology of the four-torus. The study of ...
The approach of Causal Dynamical Triangulations (CDT), a candidate theory of nonperturbative quantum...
Causal Dynamical Triangulations is a non-perturbative quantum gravity model, defined with a lattice ...
We report on simulations of DT simplicial gravity for manifolds with the topology of the 4-disk. We ...
Dynamical Triangulations provide us with a lattice regularization of four-dimensional Euclidean quan...
The purpose of this study is to investigate and propose new algorithms and methods of analysis in th...
Using Monte Carlo computer simulations, we study the impact of matter fields on the geometry of a ty...
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
Contains fulltext : 239194.pdf (Publisher’s version ) (Open Access
The theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative theory of q...
Abstract We investigate the impact of topology on the phase structure of fourdimensional Causal Dyna...
Causal Dynamical Triangulations (CDT) is a non-perturbative lattice approach to quantum gravity wher...
Causal Dynamical Triangulations (CDT) is a lattice formulation of quantum gravity, suitable for Mont...
Lattice formulations of gravity can be used to study non-perturbative aspects of quantum gravity. Ca...
Causal Dynamical Triangulations (CDT) is a lattice formulation of quantum gravity, suitable for Mont...
We investigate the geometry of a quantum universe with the topology of the four-torus. The study of ...
The approach of Causal Dynamical Triangulations (CDT), a candidate theory of nonperturbative quantum...
Causal Dynamical Triangulations is a non-perturbative quantum gravity model, defined with a lattice ...
We report on simulations of DT simplicial gravity for manifolds with the topology of the 4-disk. We ...
Dynamical Triangulations provide us with a lattice regularization of four-dimensional Euclidean quan...
The purpose of this study is to investigate and propose new algorithms and methods of analysis in th...
Using Monte Carlo computer simulations, we study the impact of matter fields on the geometry of a ty...
We calculate the spectral dimension for a nonperturbative lattice approach to quantum gravity, known...
Contains fulltext : 239194.pdf (Publisher’s version ) (Open Access
The theory of causal dynamical triangulations (CDT) attempts to define a nonperturbative theory of q...