English

Regularizing infrared divergences in de Sitter spacetime: Loops, dimensional regularization, and cutoffs

High Energy Physics - Theory 2025-01-06 v3 Cosmology and Nongalactic Astrophysics High Energy Physics - Phenomenology

Abstract

Correlation functions of light scalar fields in de Sitter spacetime, computed via standard perturbation theory, often exhibit secular growth characterized by time-dependent divergent terms in the form of powers of lna(t)\ln a(t), where a(t)a(t) is the scale factor describing cosmic expansion. It is widely believed that loop corrections further enhance this secular growth. We argue that this is not necessarily the case: Loop corrections can be systematically handled using standard perturbative techniques, such as dimensional regularization, without introducing new lna(t)\ln a(t) terms. We focus on a canonical massless scalar field φ\varphi with self-interactions described by a potential V(φ)\mathcal{V}(\varphi), and analyze correlation functions represented by diagrams with a single vertex and an arbitrary number of loops. In this framework, infrared divergences can be systematically eliminated with counterterms at each order in perturbation theory, leading to loop-corrected correlation functions that are indistinguishable from their tree-level forms, with no secular growth from loops. Furthermore, adopting a Wilsonian perspective, we explore the role of cutoffs in computing loop corrections within effective field theory and identify the effective potential Veff(φ)\mathcal{V}_{\rm eff}(\varphi), which guarantees cutoff-independent observables. We conclude that when infrared comoving cutoffs are used to regularize loop integrals, time-dependent Wilsonian coefficients are necessary to maintain cutoff-free correlation functions. Neglecting this time dependence results in secular growth from loops.

Keywords

Cite

@article{arxiv.2406.07610,
  title  = {Regularizing infrared divergences in de Sitter spacetime: Loops, dimensional regularization, and cutoffs},
  author = {Javier Huenupi and Ellie Hughes and Gonzalo A. Palma and Spyros Sypsas},
  journal= {arXiv preprint arXiv:2406.07610},
  year   = {2025}
}

Comments

13 pages + references. V3: fixed typos, added several clarifications and refs. Matches published version

R2 v1 2026-06-28T17:02:09.724Z