A general approach to noncommutative spaces from Poisson homogeneous spaces: Applications to (A)dS and Poincaré
arXiv:2212.11750 · doi:10.21468/SciPostPhysProc.14.017
Abstract
In this contribution we present a general procedure that allows the construction of noncommutative spaces with quantum group invariance as the quantization of their associated coisotropic Poisson homogeneous spaces coming from a coboundary Lie bialgebra structure. The approach is illustrated by obtaining in an explicit form several noncommutative spaces from (3+1)D (A)dS and Poincaré coisotropic Lie bialgebras. In particular, we review the construction of the -Minkowski and -(A)dS spacetimes in terms of the cosmological constant . Furthermore, we present all noncommutative Minkowski and (A)dS spacetimes that preserved a quantum Lorentz subgroup. Finally, it is also shown that the same setting can be used to construct the three possible 6D -Poincaré spaces of time-like. Some open problems are also addressed.
16 pages. Contribution to the proceedings of the 34th International Colloquium on Group Theoretical Methods in Physics, Strasbourg, France, 18-22 July, 2022
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