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February 12, 2026Journal of High Energy Physics3 citationsOpen Access

Thermal field theory correlators in the large-N limit and the spectral duality relation

SGSašo GrozdanovMVMile Vrbica

Key Points

  • This research aims to explore the spectral duality relation in large-N quantum field theories, specifically regarding thermal correlator spectra.
  • Derived spectral duality relations for three-dimensional conformal field theories and their four-dimensional black hole counterparts.
  • Applied properties of the duality to thermal correlator spectra in various spacetime dimensions.
  • Analyzed retarded two-point functions and their meromorphic characteristics with simple poles.
  • Identified that spectral duality can be applied to thermal correlators in large-N theories.
  • Showed that the spectrum of one correlator can be reconstructed from its dual counterpart.
  • Provided examples relating thermal spectra of scalar primary operators at specific fixed points.

Abstract

A bstract In ref. 1, we derived a spectral duality relation applicable to the spectra of 3 d conformal field theories (CFTs) and their holographically dual 4 d black holes. In this work, we further elaborate on the properties of this duality relation and argue that the same relation can be applied to certain pairs of thermal correlator spectra in large- N quantum field theories in any number of spacetime dimensions, provided the correlators are meromorphic functions with only simple poles and satisfy the thermal product formula. We discuss a rich set of properties that such retarded two-point functions must exhibit. We then show that the spectral duality relation and its implications apply to pairs of correlators in double-trace deformed CFTs and, more generally, to correlators in theories related by the Legendre transform. We illustrate, through several examples, how the spectrum of one correlator can be reconstructed from that of its dual correlation function. Notably, this includes cases relating the thermal spectra of scalar primary operators at ultraviolet and infrared fixed points, as well as current operators in a CFT 3 and its particle-vortex dual.

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Cite This Study

Grozdanov et al. (2026) studied this question.

synapsesocial.com/papers/698d6efe5be6419ac0d54f49https://doi.org/10.1007/jhep02(2026)106
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