JOURNAL ARTICLE

Correlation functions in four-dimensional superconformal long circular quivers

Gregory P. KorchemskyAlessandro Testa

Year: 2025 Journal:   Journal of High Energy Physics Vol: 2025 (7)   Publisher: Springer Nature

Abstract

A bstract We study two- and three-point correlation functions of chiral primary half-BPS operators in four-dimensional $$ \mathcal{N} $$ N = 2 superconformal circular, cyclic symmetric quiver theories. Using supersymmetric localization, these functions can be expressed as matrix integrals which, in the planar limit, reduce to Fredholm determinants of certain semi-infinite matrices. This powerful representation allows us to investigate the correlation functions across the parameter space of the quiver theory, including both weak and strong coupling regimes and various limits of the number of nodes and the operator scaling dimensions. At strong coupling, the standard semiclassical AdS/CFT expansion diverges in the long quiver limit. However, by incorporating both perturbative corrections (in negative powers of the ’t Hooft coupling) and an infinite tower of nonperturbative, exponentially suppressed contributions, we derive a remarkably simple expression for the correlation functions in this limit. These functions exhibit exponential decay with increasing node separation and admit an interpretation within a five-dimensional effective theory. We determine the mass spectrum of excitations propagating along the emergent fifth dimension within this theory, finding it to be given by the zeros of Bessel functions.

Keywords:
Physics Correlation Quiver Supersymmetric gauge theory Correlation function (quantum field theory) Mathematical physics Quantum electrodynamics Pure mathematics Geometry Quantum mechanics Gauge theory

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Citation History

Topics

Black Holes and Theoretical Physics
Physical Sciences →  Physics and Astronomy →  Nuclear and High Energy Physics
Algebraic structures and combinatorial models
Physical Sciences →  Mathematics →  Geometry and Topology
Quantum Chromodynamics and Particle Interactions
Physical Sciences →  Physics and Astronomy →  Nuclear and High Energy Physics

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