Quantization of Lorentzian 3d Gravity by Partial Gauge Fixing
General Relativity and Quantum Cosmology
2015-06-04 v2
Abstract
D = 2+1 gravity with a cosmological constant has been shown by Bonzom and Livine to present a Barbero-Immirzi like ambiguity depending on a parameter. We make use of this fact to show that, for positive cosmological constant, the Lorentzian theory can be partially gauge fixed and reduced to an SU(2) Chern-Simons theory. We then review the already known quantization of the latter in the framework of Loop Quantization for the case of space being topogically a cylinder. We finally construct, in the same setting, a quantum observable which, although non-trivial at the quantum level, corresponds to a null classical quantity.
Cite
@article{arxiv.1204.5455,
title = {Quantization of Lorentzian 3d Gravity by Partial Gauge Fixing},
author = {Rodrigo M. S. Barbosa and Clisthenis P Constantinidis and Zui Oporto and Olivier Piguet},
journal= {arXiv preprint arXiv:1204.5455},
year = {2015}
}
Comments
Notation defect fixed on pages 5 (bottom) and 6 (around Eqs. 3.1)-- 19 pages, Latex