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October 9, 2025Journal of High Energy Physics2 citationsOpen Access

Real-time observables in de Sitter thermodynamics

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MGManvir GrewalYLY. T. Albert Law

Key Points

  • At the de Sitter temperature, Wightman function poles disappear as rational multiples of inverse temperature change, indicating novel thermal properties.
  • The relationship between the Harish-Chandra character and the spectral function offers a new view into de Sitter thermodynamics, potentially broadening our understanding.
  • Analytic continuations from S d +1 allow for the reconstruction of Lorentzian correlators, affirming their connection to various mass cases, including non-positive ones.
  • Unique correlators in the massless case emerge from static patch quantization, establishing a consistent approach to thermal correlators.

Abstract

A bstract We study real-time finite-temperature correlators for free scalars of any mass in a dS d +1 static patch in any dimension. We show that whenever the inverse temperature is a rational multiple of the inverse de Sitter temperature, certain Matsubara poles of the symmetric Wightman function disappear. At the de Sitter temperature, we explicitly show how the Lorentzian thermal correlators can all be obtained by analytic continuations from the round S d +1 . We establish the precise relation between the Harish-Chandra character for SO(1 , d + 1) and the integrated spectral function, providing a novel dynamical perspective on the former and enabling generalizations. Furthermore, we study scalars with exceptional non-positive masses. We provide a physical picture for the distinctive structures of their characters. For the massless case, we perform a consistent static patch quantization, and find the unique S d +1 correlator that analytically continues to the correlators in the quantum theory.

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Cite This Study

Grewal et al. (2025) studied this question.

synapsesocial.com/papers/68e70db790569dd607ee67bchttps://doi.org/10.1007/jhep10(2025)052
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Real-time observables in de Sitter thermodynamics2024
  2. 2The spectrum of pure dS3 gravity in the static patch2025
  3. 3On the simplicity of de Sitter correlators2026
  4. 4(Non-)Conserved Currents and Cosmological Correlators2025
  5. 5(Non-)perturbative techniques in de Sitter space2026