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      Gauging the twisted Poincare symmetry as noncommutative theory of gravitation

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          Abstract

          Einstein's Theory of General Relativity was formulated as a gauge theory of Lorentz symmetry by Utiyama in 1956, while the Einstein-Cartan gravitational theory was formulated by Kibble in 1961 as the gauge theory of Poincare transformations. In a noncommutative space-time with canonical commutation relations between the coordintes, Lorentz symmetry is violated and field theories constructed on such space-times have instead the so-called twisted Poincare invariance. In this paper a gauge theory formulation of noncommutative gravity is proposed based on the twisted Poincare symmetry together with the requirement of covariance under the general coordinate transformations, an essential ingredient of the theory of general relativity. The advantages of such a formulation as well as the related problems are discussed and possible ways out are outlined.

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          General relativity with spin and torsion: Foundations and prospects

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            Quantized Space-Time

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              Invariant Theoretical Interpretation of Interaction

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                Author and article information

                Journal
                04 July 2008
                Article
                10.1103/PhysRevD.79.044016
                0807.0733
                23890c08-9dd8-4238-83ae-c715101aa981

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Custom metadata
                HIP-2008-17/TH
                Phys.Rev.D79:044016,2009
                21 pages
                hep-th

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