Non-commutative waves for gravitational anyons
Abstract
We revisit the representation theory of the quantum double of the universal cover of the Lorentz group in 2+1 dimensions, motivated by its role as a deformed Poincar\'e symmetry and symmetry algebra in (2+1)-dimensional quantum gravity. We express the unitary irreducible representations in terms of covariant, infinite-component fields on curved momentum space satisfying algebraic spin and mass constraints. Adapting and applying the method of group Fourier transforms, we obtain covariant fields on (2+1)-dimensional Minkowski space which necessarily depend on an additional internal and circular dimension. The momentum space constraints turn into differential or exponentiated differential operators, and the group Fourier transform induces a star product on Minkowski space and the internal space which is essentially a version of Rieffel's deformation quantisation via convolution.
Cite
@article{arxiv.1804.05782,
title = {Non-commutative waves for gravitational anyons},
author = {Sergio Inglima and Bernd Schroers},
journal= {arXiv preprint arXiv:1804.05782},
year = {2019}
}
Comments
36 pages, 2 figures; minor corrections and additional references (version to appear in Letters in Mathematical Physics)