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The joy of factorization at large N: five-dimensional indices and AdS black holes

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arxiv 2111.03069 v1 pith:TQELLYQ4 submitted 2021-11-04 hep-th

The joy of factorization at large $N$: five-dimensional indices and AdS black holes

classification hep-th
keywords timesmathcalmathfrakpartitionepsilonfunctionslargesigma
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We discuss the large $N$ factorization properties of five-dimensional supersymmetric partition functions for CFT with a holographic dual. We consider partition functions on manifolds of the form $\mathcal{M}= \mathcal{M}_3 \times S^2_\epsilon$, where $\epsilon$ is an equivariant parameter for rotation. We show that, when $\mathcal{M}_3$ is a squashed three-sphere, the large $N$ partition functions can be obtained by gluing elementary blocks associated with simple physical quantities. The same is true for various observables of the theories on $\mathcal{M}_3=\Sigma_\mathfrak{g} \times S^1$, where $\Sigma_\mathfrak{g}$ is a Riemann surface of genus $\mathfrak{g}$, and, with a natural assumption on the form of the saddle point, also for the partition function, corresponding to either the topologically twisted index or a mixed one. This generalizes results in three and four dimensions and correctly reproduces the entropy of known black objects in AdS$_6 \times_{w} S^4$ and AdS$_7\times S^4$. We also provide the supersymmetric background and explicitly perform localization for the mixed index on $\Sigma_\mathfrak{g} \times S^1 \times S^2_\epsilon$, filling a gap in the literature.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Ten-dimensional localization

    hep-th 2026-07 conditional novelty 7.0

    Equivariantly closed polyforms for type II Page fluxes and actions enable direct 10D localization of on-shell actions and flux quantization for minimally supersymmetric backgrounds.

  2. Towards OSV in AdS

    hep-th 2026-06 unverdicted novelty 6.0

    Derives Z_{S^1×S^2} ∼ |Z_{S^3_b}|^2 for 3d N=2 SCFTs and links it holographically to supersymmetric AdS4 black hole partition functions, akin to OSV.

  3. Perturbative Coulomb branches on $\mathbb{R}^3\times S^1$: the global D-term potential

    hep-th 2026-04 unverdicted novelty 6.0

    A global perturbative potential for the Coulomb branch is derived via zeta regularization of D-terms from KK modes in R^3 x S^1 compactifications of 4d N=1 theories.