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TQFT gravity and ensemble holography

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arxiv 2405.20366 v2 pith:5HUU3QAQ submitted 2024-05-30 hep-th

classification hep-th
keywords boundaryensemblebulkdualitygenustopologiestqftderivation
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We outline a general derivation of holographic duality between "TQFT gravity" - the path integral of a 3d TQFT summed over different topologies - and an ensemble of boundary 2d CFTs. The key idea is to place the boundary ensemble on a Riemann surface of very high genus, where the duality trivializes. The duality relation at finite genus is then obtained by genus reduction. Our derivation is generic and does not rely on an explicit form of the bulk or boundary partition functions. It guarantees unitarity and suggests that the bulk sum should include all possible topologies. In the case of Abelian Chern-Simons theory with compact gauge group we show that the weights of the boundary ensemble are equal, while the bulk sum reduces to a finite sum over equivalence classes of topologies, represented by handlebodies with possible line defects.

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  1. Fermionic CFTs from topological boundaries in abelian Chern-Simons theories

    hep-th 2025-02 conditional novelty 6.0 of 10

    Odd Lagrangian subgroups of the discriminant group of an abelian Chern-Simons theory give fermionic CFTs whose spectra are an NS lattice and its shadow, yielding new fermionic code CFTs and a classification of supersy...

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