Quantum improved Schwarzschild-(A)dS and Kerr-(A)dS space-times

We discuss quantum black holes in asymptotically safe quantum gravity with a scale identification based on the Kretschmann scalar. After comparing this scenario with other scale identifications, we investigate in detail the Kerr-(A)dS and Schwarzschild-(A)dS space-times. The global structure of thes...

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Bibliographic Details
Main Authors: Pawlowski, Jan M. (Author) , Stock, Dennis (Author)
Format: Article (Journal) Chapter/Article
Language:English
Published: 27 Jul 2018
In: Arxiv

Online Access:Verlag, Volltext: http://arxiv.org/abs/1807.10512
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Author Notes:Jan M. Pawlowski and Dennis Stock
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Summary:We discuss quantum black holes in asymptotically safe quantum gravity with a scale identification based on the Kretschmann scalar. After comparing this scenario with other scale identifications, we investigate in detail the Kerr-(A)dS and Schwarzschild-(A)dS space-times. The global structure of these geometries is studied as well as the central curvature singularity and test particle trajectories. The existence of a Planck-sized, extremal, zero temperature black hole remnant guarantees a stable endpoint of the evaporation process via Hawking radiation.
Item Description:Gesehen am 18.12.2018
Physical Description:Online Resource