Computer Simulations of 3d Lorentzian Quantum Gravity
Abstract
We investigate the phase diagram of non-perturbative three-dimensional Lorentzian quantum gravity with the help of Monte Carlo simulations. The system has a first-order phase transition at a critical value of the bare inverse gravitational coupling constant . For the system reduces to a product of uncorrelated Euclidean 2d gravity models and has no intrinsic interest as a model of 3d gravity. For , extended three-dimensional geometries dominate the functional integral despite the fact that we perform a sum over geometries and no particular background is distinguished at the outset. Furthermore, all systems with have the same continuum limit. A different choice of corresponds merely to a redefinition of the overall length scale.
Cite
@article{arxiv.hep-lat/0011055,
title = {Computer Simulations of 3d Lorentzian Quantum Gravity},
author = {J. Ambjorn and J. Jurkiewicz and R. Loll},
journal= {arXiv preprint arXiv:hep-lat/0011055},
year = {2009}
}
Comments
4 pages, contribution to Lattice 2000 (Gravity and Matrix Models), typos corrected