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Logarithmic corrections to black hole entropy from Kerr/CFT

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arxiv 1612.04833 v1 pith:PPNMIRUR submitted 2016-12-14 hep-th

classification hep-th
keywords blackcorrectionsholelogarithmickerragreementarea-entropybeen
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It has been shown by A. Sen that logarithmic corrections to the black hole area-entropy law are entirely determined macroscopically from the massless particle spectrum. They therefore serve as powerful consistency checks on any proposed enumeration of quantum black hole microstates. Sen's results include a macroscopic computation of the logarithmic corrections for a five-dimensional near extremal Kerr-Newman black hole. Here we compute these corrections microscopically using a stringy embedding of the Kerr/CFT correspondence and find perfect agreement.

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  1. A One-Loop Test of the near-AdS$_2$/near-CFT$_1$ Correspondence

    hep-th 2019-08 conditional novelty 6.0 of 10

    The bulk one-loop partition function of JT gravity reproduces the SYK result -3/2 log beta, with the logarithmic contribution coming entirely from quadratic holomorphic differentials.

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