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Thermodynamics of Black Holes in Two (and Higher) Dimensions

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arxiv hep-th/0703230 v2 pith:QIX3K4RP submitted 2007-03-26 hep-th gr-qc

classification hep-thgr-qc
keywords blackholethermodynamicsactioneuclideanholesimprovedintegral
verification ladder T0 review T1 audit T2 compute T3 formal
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A comprehensive treatment of black hole thermodynamics in two-dimensional dilaton gravity is presented. We derive an improved action for these theories and construct the Euclidean path integral. An essentially unique boundary counterterm renders the improved action finite on-shell, and its variational properties guarantee that the path integral has a well-defined semi-classical limit. We give a detailed discussion of the canonical ensemble described by the Euclidean partition function, and examine various issues related to stability. Numerous examples are provided, including black hole backgrounds that appear in two dimensional solutions of string theory. We show that the Exact String Black Hole is one of the rare cases that admits a consistent thermodynamics without the need for an external thermal reservoir. Our approach can also be applied to certain higher-dimensional black holes, such as Schwarzschild-AdS, Reissner-Nordstrom, and BTZ.

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Cited by 2 Pith papers

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    A triple-scaling limit of quantum gravity keeps black hole thermodynamics finite and reproduces the Hawking temperature.

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    hep-th 2026-02 unverdicted novelty 6.0 of 10

    Deformations of the double-scaled SYK model via finite-cutoff holography produce Krylov complexity as wormhole length and realize Susskind's stretched horizon proposal through targeted T² deformations in the high-ener...

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