Pith. sign in

Arabi Ardehali, M

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

We study the superconformal index $Z(q)$ of 3d $\mathcal{N}=2$ gauge theories in Cardy-like limits $\beta = \log \tfrac{1}{q} \to 0^+$, extending techniques recently developed in the 4d $\mathcal{N}=1$ context. For theories with vectorlike matter content we find on the first sheet ($q \to 1$) that $Z(q) \sim \beta^{-\#}$, where the exponent $\#$ is determined by a $multiscale\ decomposition$ of the BPS moduli space appearing in the localization formula for the index. On the second sheet ($q \to e^{2\pi i})$ we find $Z(q) \sim e^{\#/ \beta}$, and that the long-standing puzzle of apparent gauge-enhancing saddles is resolved (in the absence of Chern--Simons couplings) via a novel $Lorentzian\ factorization$ formula that establishes complete screening. A key insight is the use of $Poisson\ resummation$, which streamlines the asymptotic analysis, sharpens the link to Kaluza--Klein effective field theory, and provides a dual description of parts of the BPS moduli space in terms of punctured surfaces. The Lorentzian factorization formula also emerges from Poisson resummation, though applied after a contour crossing in moduli space. This, in turn, hints at a correspondence between 3d monopoles and vortices via 2d duality.

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hep-th 2

years

2026 2

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UNVERDICTED 2

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background 2

representative citing papers

Towards OSV in AdS

hep-th · 2026-06-22 · 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.

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Showing 2 of 2 citing papers.

  • Towards OSV in AdS hep-th · 2026-06-22 · unverdicted · none · ref 58 · internal anchor

    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.

  • Perturbative Coulomb branches on $\mathbb{R}^3\times S^1$: the global D-term potential hep-th · 2026-04-29 · unverdicted · none · ref 37 · internal anchor

    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.