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A One-loop Test of Quantum Black Holes in Anti de Sitter Space

James T. Liu, Leopoldo A. Pando Zayas, Vimal Rathee, Wenli Zhao

TL;DR

Within 11-dimensional supergravity, the logarithmic correction to the entropy of magnetically charged asymptotically AdS_{4} black holes with arbitrary horizon topology is computed and perfect agreement with the expected microscopic result arising from the dual field theory computation of the topologically twisted index is found.

Abstract

Within eleven dimensional supergravity we compute the logarithmic correction to the entropy of magnetically charged asymptotically AdS${}_4$ black holes with arbitrary horizon topology. We find perfect agreement with the expected microscopic result arising from the dual field theory computation of the topologically twisted index. Our result relies crucially on a particular limit to the extremal black hole case and clarifies some aspects of quantum corrections in asymptotically AdS spacetimes.

A One-loop Test of Quantum Black Holes in Anti de Sitter Space

TL;DR

Within 11-dimensional supergravity, the logarithmic correction to the entropy of magnetically charged asymptotically AdS_{4} black holes with arbitrary horizon topology is computed and perfect agreement with the expected microscopic result arising from the dual field theory computation of the topologically twisted index is found.

Abstract

Within eleven dimensional supergravity we compute the logarithmic correction to the entropy of magnetically charged asymptotically AdS black holes with arbitrary horizon topology. We find perfect agreement with the expected microscopic result arising from the dual field theory computation of the topologically twisted index. Our result relies crucially on a particular limit to the extremal black hole case and clarifies some aspects of quantum corrections in asymptotically AdS spacetimes.

Paper Structure

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