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Spin-Statistics for Black Hole Microstates

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arxiv 2309.03478 v3 pith:O5G445EM submitted 2023-09-07 hep-th gr-qc

classification hep-thgr-qc
keywords blackholeenergycomputefunctiongravitationalintegralmicrostates
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abstract

The gravitational path integral can be used to compute the number of black hole states for a given energy window, or the free energy in a thermal ensemble. In this article we explain how to use the gravitational path integral to compute the separate number of bosonic and fermionic black hole microstates. We do this by comparing the partition function with and without the insertion of $(-1)^{\sf F}$. In particular we introduce a universal rotating black hole that contributes to the partition function in the presence of $(-1)^{\sf F}$. We study this problem for black holes in asymptotically flat space and in AdS, putting constraints on the high energy spectrum of holographic CFTs (not necessarily supersymmetric). Finally, we analyze wormhole contributions to related quantities.

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  1. Superconformal indices and black hole saddles

    hep-th 2026-08 conditional novelty 7.0 of 10

    At large Im tau the superconformal index tends to 1, and the authors show that a Picard-Lefschetz analysis of a Lorentzian-inspired bulk integral enforces this by making all exponentially large black hole saddles irre...

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