The double torus as a 2D cosmos: groups, geometry and closed geodesics
General Relativity and Quantum Cosmology
2008-11-26 v1
Abstract
The double torus provides a relativistic model for a closed 2D cosmos with topology of genus 2 and constant negative curvature. Its unfolding into an octagon extends to an octagonal tessellation of its universal covering, the hyperbolic space H^2. The tessellation is analysed with tools from hyperbolic crystallography. Actions on H^2 of groups/subgroups are identified for SU(1, 1), for a hyperbolic Coxeter group acting also on SU(1, 1), and for the homotopy group \Phi_2 whose extension is normal in the Coxeter group. Closed geodesics arise from links on H^2 between octagon centres. The direction and length of the shortest closed geodesics is computed.
Cite
@article{arxiv.gr-qc/0401101,
title = {The double torus as a 2D cosmos: groups, geometry and closed geodesics},
author = {P. Kramer and M. Lorente},
journal= {arXiv preprint arXiv:gr-qc/0401101},
year = {2008}
}
Comments
Latex, 27 pages, 5 figures (late submission to arxiv.org)