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Quantum Kerr-de Sitter black holes in three dimensions

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arxiv 2303.08845 v2 pith:EZZE3TK6 submitted 2023-03-15 hep-th gr-qc

classification hep-thgr-qc
keywords sitterblackholekerr-dequantumbackreactionclassicalanti-de
verification ladder T0 review T1 audit T2 compute T3 formal
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We use braneworld holography to construct a three-dimensional quantum-corrected Kerr-de Sitter black hole, exactly accounting for semi-classical backreaction effects due to a holographic conformal field theory. By contrast, classically there are no de Sitter black holes in three-dimensions, only geometries with a single cosmological horizon. The quantum Kerr black hole shares many qualitative features with the classical four-dimensional Kerr-de Sitter solution. Of note, backreaction induces inner and outer black hole horizons which hide a ring singularity. Moreover, the quantum-corrected geometry has extremal, Nariai, and ultracold limits, which appear as fibered products of a circle and two-dimensional anti-de Sitter, de Sitter, and Minkowski space, respectively. The thermodynamics of the classical bulk black hole, described by the rotating four-dimensional anti-de Sitter C-metric, has an interpretation on the brane as thermodynamics of the quantum black hole, obeying a semi-classical first law where the Bekenstein-Hawking area entropy is replaced by the generalized entropy. For purposes of comparison, we derive the renormalized quantum stress-tensor due to a free conformally coupled scalar field in the classical Kerr-de Sitter conical geometry and perturbatively solve for its backreaction.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. CAMF: Collaborative Adversarial Multi-agent Framework for Machine Generated Text Detection

    cs.CL 2025-08 unverdicted novelty 5.0 of 10

    CAMF uses collaborating and adversarial LLM agents to extract linguistic features, probe consistency, and aggregate judgments, claiming state-of-the-art zero-shot machine-text detection.

  2. Timelike entanglement and central charge for quantum BTZ black holes

    hep-th 2025-07 reject novelty 5.0 of 10

    The paper numerically computes timelike entanglement entropy for quantum BTZ black holes and claims that the effective central charge drops sharply as quantum backreaction crosses a critical value.

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