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Quantum backreaction for overspinning BTZ geometries

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arxiv 2301.04256 v1 pith:BE37SZ57 submitted 2023-01-11 hep-th gr-qc

classification hep-thgr-qc
keywords overspinninggeometriessemiclassicalsingularitybackreactionconformallycoupledequations
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We examine the semiclassical backreaction of a conformally coupled scalar field on an overspinning BTZ geometry. This extends the work done on a similar problem for ($2+1$)- AdS geometries of the BTZ family with $|M|>|J|$. The overspinning classical solutions corresponds to $|M|<|J|$ and possess a naked singularity at $r=0$. Using the renormalized quantum stress-energy tensor for a conformally coupled scalar field on such a spacetime, we obtain the semiclassical Einstein equations, which we attempt to solve perturbatively. We show that the stress-energy tensor is non-renormalizable in this approach, and consequently the perturbative solution to the semiclassical equations in the overspinning case does not exist. This could be an indication of the fact that the naked singularity at the center of an overspinning geometry is of a more severe nature than the conical singularity found in the same family of BTZ geometries.

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  1. Holographic correlation functions from wedge

    hep-th 2024-11 conditional novelty 6.0 of 10

    Correlation functions of heavy operators can be computed from the on-shell action of a wedge excised from AdS3, verified in Poincaré, global, and BTZ backgrounds.

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