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Black hole microstate counting in Type IIB from 5d SCFTs
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abstract
We use recently established AdS$_6$/CFT$_5$ dualities to count the microstates of magnetically charged AdS$_6 \times S^2 \times \Sigma$ black holes in Type IIB. The near-horizon limit is described by solutions with AdS$_2 \times \Sigma_{\mathfrak{g}_1} \times \Sigma_{\mathfrak{g}_2} \times S^2 \times \Sigma$ geometry, where $\Sigma_{\mathfrak{g}_i}$ are Riemann surfaces of constant curvature and $\Sigma$ is a further Riemann surface over which the geometry is warped. Our results show that the topologically twisted indices of the proposed dual superconformal field theories precisely reproduce the Bekenstein-Hawking entropy of this class of black holes. This provides further support for a prescription to compute five-dimensional topologically twisted indices put forth recently, and for the proposed dualities. We confirm the $N^4$ scaling found in the sphere partition functions and extend previous matches of sphere partition functions to AdS$_6$ solutions with monodromy.
Forward citations
Cited by 3 Pith papers
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Exact results for 5d SCFTs of long quiver type
Analytic saddle-point solutions of the squashed S5 localization matrix model yield exact large-N free energies for long-quiver 5d SCFTs, matching holographic predictions.
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Uplifting supersymmetric $AdS_6$ black holes to type II supergravity
The author uplifts supersymmetric AdS6 black holes from F(4) gauged supergravity into massive type IIA and type IIB supergravity, and verifies an entropy match in the IIA case.
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Black hole entropy function for toric theories via Bethe Ansatz
Using Bethe Ansatz equations, the authors show that a simple class of solutions reproduces the conjectured entropy function of rotating AdS5 black holes for all toric quiver gauge theories.
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