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      Quantum Gravity, Dynamical Triangulation and Higer Derivative Regularization

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          Abstract

          We consider a discrete model of euclidean quantum gravity in four dimensions based on a summation over random simplicial manifolds. The action used is the Einstein-Hilbert action plus an \(R^2\)-term. The phase diagram as a function of the bare coupling constants is studied in the search for a sensible continuum limit. For small values of the coupling constant of the \(R^2\) term the model seems to belong to the same universality class as the model with pure Einstein-Hilbert action and exhibits the same phase transition. The order of the transition may be second or higher. The average curvature is positive at the phase transition, which makes it difficult to understand the possible scaling relations of the model.

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          THREE-DIMENSIONAL SIMPLICIAL QUANTUM GRAVITY AND GENERALIZED MATRIX MODELS

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            String Perturbation Theory Diverges

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              Higher derivative quantum gravity on a simplicial lattice

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                Author and article information

                Journal
                12 August 1992
                Article
                10.1016/0550-3213(93)90075-Z
                hep-th/9208032
                70b21095-0629-4b81-a58d-26865f96af14
                History
                Custom metadata
                NBI-HE-92-53
                Nucl.Phys. B393 (1993) 601-632
                27 pages (Latex), figures not included. Post script file containing 15 figures (1000 blocks) available from kristjansen@nbivax.nbi.dk.
                hep-th hep-lat

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