Towards (3+1) gravity through Drinfel'd doubles with cosmological constant

We present the generalisation to (3+1) dimensions of a quantum deformation of the (2+1) (Anti)-de Sitter and Poincaré Lie algebras that is compatible with the conditions imposed by the Chern–Simons formulation of (2+1) gravity. Since such compatibility is automatically fulfilled by deformations comi...

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Main Authors: Angel Ballesteros, Francisco J. Herranz, Pedro Naranjo
Format: Article
Language:English
Published: Elsevier 2015-06-01
Series:Physics Letters B
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269315002841
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spelling doaj-ea2bb1016cfd4f059dd7ed6d031e77932020-11-24T22:51:11ZengElsevierPhysics Letters B0370-26932015-06-017463743Towards (3+1) gravity through Drinfel'd doubles with cosmological constantAngel Ballesteros0Francisco J. Herranz1Pedro Naranjo2Departamento de Física, Universidad de Burgos, E-09001 Burgos, SpainDepartamento de Física, Universidad de Burgos, E-09001 Burgos, SpainDepartamento de Física, Universidad de Burgos, E-09001 Burgos, SpainWe present the generalisation to (3+1) dimensions of a quantum deformation of the (2+1) (Anti)-de Sitter and Poincaré Lie algebras that is compatible with the conditions imposed by the Chern–Simons formulation of (2+1) gravity. Since such compatibility is automatically fulfilled by deformations coming from Drinfel'd double structures, we believe said structures are worth being analysed also in the (3+1) scenario as a possible guiding principle towards the description of (3+1) gravity. To this aim, a canonical classical r-matrix arising from a Drinfel'd double structure for the three (3+1) Lorentzian algebras is obtained. This r-matrix turns out to be a twisted version of the one corresponding to the (3+1) κ-deformation, and the main properties of its associated noncommutative spacetime are analysed. In particular, it is shown that this new quantum spacetime is not isomorphic to the κ-Minkowski one, and that the isotropy of the quantum space coordinates can be preserved through a suitable change of basis of the quantum algebra generators. Throughout the paper the cosmological constant appears as an explicit parameter, thus allowing the (flat) Poincaré limit to be straightforwardly obtained. Keywords: (3+1) gravity, Anti-de Sitter, Cosmological constant, Quantum groups, Classical r-matrices, Drinfel'd doubles, Noncommutative spacetimehttp://www.sciencedirect.com/science/article/pii/S0370269315002841
collection DOAJ
language English
format Article
sources DOAJ
author Angel Ballesteros
Francisco J. Herranz
Pedro Naranjo
spellingShingle Angel Ballesteros
Francisco J. Herranz
Pedro Naranjo
Towards (3+1) gravity through Drinfel'd doubles with cosmological constant
Physics Letters B
author_facet Angel Ballesteros
Francisco J. Herranz
Pedro Naranjo
author_sort Angel Ballesteros
title Towards (3+1) gravity through Drinfel'd doubles with cosmological constant
title_short Towards (3+1) gravity through Drinfel'd doubles with cosmological constant
title_full Towards (3+1) gravity through Drinfel'd doubles with cosmological constant
title_fullStr Towards (3+1) gravity through Drinfel'd doubles with cosmological constant
title_full_unstemmed Towards (3+1) gravity through Drinfel'd doubles with cosmological constant
title_sort towards (3+1) gravity through drinfel'd doubles with cosmological constant
publisher Elsevier
series Physics Letters B
issn 0370-2693
publishDate 2015-06-01
description We present the generalisation to (3+1) dimensions of a quantum deformation of the (2+1) (Anti)-de Sitter and Poincaré Lie algebras that is compatible with the conditions imposed by the Chern–Simons formulation of (2+1) gravity. Since such compatibility is automatically fulfilled by deformations coming from Drinfel'd double structures, we believe said structures are worth being analysed also in the (3+1) scenario as a possible guiding principle towards the description of (3+1) gravity. To this aim, a canonical classical r-matrix arising from a Drinfel'd double structure for the three (3+1) Lorentzian algebras is obtained. This r-matrix turns out to be a twisted version of the one corresponding to the (3+1) κ-deformation, and the main properties of its associated noncommutative spacetime are analysed. In particular, it is shown that this new quantum spacetime is not isomorphic to the κ-Minkowski one, and that the isotropy of the quantum space coordinates can be preserved through a suitable change of basis of the quantum algebra generators. Throughout the paper the cosmological constant appears as an explicit parameter, thus allowing the (flat) Poincaré limit to be straightforwardly obtained. Keywords: (3+1) gravity, Anti-de Sitter, Cosmological constant, Quantum groups, Classical r-matrices, Drinfel'd doubles, Noncommutative spacetime
url http://www.sciencedirect.com/science/article/pii/S0370269315002841
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AT pedronaranjo towards31gravitythroughdrinfelddoubleswithcosmologicalconstant
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