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Vacuum Energy in Odd-Dimensional AdS Gravity

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arxiv hep-th/0412046 v1 pith:XEJVJCFD submitted 2004-12-06 hep-th

classification hep-th
keywords boundaryactionasymptoticblackchargesconservedenergygravity
verification ladder T0 review T1 audit T2 compute T3 formal

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A background-independent, Lorentz-covariant approach to compute conserved charges in odd-dimensional AdS gravity, alternative to the standard counterterms method, is presented. A set of boundary conditions on the asymptotic extrinsic and Lorentz curvature, rather than a Dirichlet boundary condition on the metric is used. With a given prescription of the boundary term, a well-defined action principle in any odd dimension is obtained. The same boundary term regularizes the Euclidean action and gives the correct black hole thermodynamics. The conserved charges are obtained from the asymptotic symmetries through Noether theorem without reference to any background. For topological AdS black holes the vacuum energy matches the expression conjectured by Emparan, Johnson and Myers \cite{Emparan-Johnson-Myers} for all odd dimensions.

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  1. Renormalized AdS gravity and holographic entanglement entropy of even-dimensional CFTs

    hep-th 2019-08 conditional novelty 6.0 of 10

    Kounterterm renormalization is extended to even-dimensional holographic CFTs, yielding a universal entanglement entropy formula whose logarithmic coefficient reproduces the type A central charge.

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