Quantum group symmetry and particle scattering in (2+1)-dimensional quantum gravity
High Energy Physics - Theory
2015-06-26 v1 General Relativity and Quantum Cosmology
Quantum Algebra
Abstract
Starting with the Chern-Simons formulation of (2+1)-dimensional gravity we show that the gravitational interactions deform the Poincare symmetry of flat space-time to a quantum group symmetry. The relevant quantum group is the quantum double of the universal cover of the (2+1)-dimensional Lorentz group, or Lorentz double for short. We construct the Hilbert space of two gravitating particles and use the universal R-matrix of the Lorentz double to derive a general expression for the scattering cross section of gravitating particles with spin. In appropriate limits our formula reproduces the semi-classical scattering formulae found by 't Hooft, Deser, Jackiw and de Sousa Gerbert.
Cite
@article{arxiv.hep-th/0205021,
title = {Quantum group symmetry and particle scattering in (2+1)-dimensional quantum gravity},
author = {F. A. Bais and N. M. Muller and B. J. Schroers},
journal= {arXiv preprint arXiv:hep-th/0205021},
year = {2015}
}
Comments
45 pages, amslatex