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Localization & Exact Holography

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arxiv 1111.1161 v2 pith:BVGLNLXT submitted 2011-11-04 hep-th

classification hep-th
keywords partitionfunctionblackbulkboundaryexactholesquantum
verification ladder T0 review T1 audit T2 compute T3 formal
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We consider the AdS_2/CFT_1 holographic correspondence near the horizon of big four-dimensional black holes preserving four supersymmetries in toroidally compactified Type-II string theory. The boundary partition function of CFT_1 is given by the known quantum degeneracies of these black holes. The bulk partition function is given by a functional integral over string fields in AdS_2. Using recent results on localization we reduce the infinite-dimensional functional integral to a finite number of ordinary integrals over a space of localizing instantons. Under reasonable assumptions about the relevant terms in the effective action, these integrals can be evaluated exactly to obtain a bulk partition function. It precisely reproduces all terms in the exact Rademacher expansion of the boundary partition function as nontrivial functions of charges except for the Kloosterman sum which can in principle follow from an analysis of phases in the background of orbifolded instantons. Our results can be regarded as a step towards proving `exact holography' in that the bulk and boundary partition functions computed independently agree for finite charges. Since the bulk partition function defines the quantum entropy of the black hole, our results enable the evaluation of perturbative as well as nonperturbative quantum corrections to the Bekenstein-Hawking-Wald entropy of these black holes.

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Cited by 2 Pith papers

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    The one-loop logarithmic entropy correction for a hyperbolic BPS black hole in AdS4 depends on the unfixed horizon scalar modulus and acts as a quantum potential that lifts the classical flat direction.

  2. One-loop determinants for black holes in 4d gauged supergravity

    hep-th 2019-08 conditional novelty 6.0 of 10

    The one-loop determinants for vector multiplets scale as (v1 chi_V)^{1/4} per multiplet, physical hypermultiplets give the inverse, and these combine into logarithmic corrections to AdS4 black hole entropy with an und...

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