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October 20, 20250 citationsOpen Access

Renormalization group corrections to ΛCDM model and observational consequences for H₀ tension

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NBNicolas R. BertiniMNMarcel NovaesRMRodrigo von Marttens

Key Points

  • The best-fit value for the parameter ν is - (2.5 ± 1.3) × 10⁻⁴, placing it in the 2σ region.
  • This approach links cosmology with particle physics, suggesting new physics below the Planck scale.
  • Observational consistency was found with data from CMB, BAO, and SN Ia, addressing H0 tension.
  • Renormalization group corrections allow for variations in the cosmological constant and Newton's constant.

Abstract

We explore the renormalization group-based extension of the ΛCDM model as a potential solution to the current cosmological tensions. In this approach, both the cosmological constant density and Newton's constant are allowed to vary with the energy scale, as a consequence of the remnant effects of massive quantum fields in the low-energy regime. The corresponding cosmological model is consistent with the principles of quantum field theory, based on the covariance of the vacuum effective action, and is characterized by an unique extra parameter ν. Our analysis yields a best-fit value of ν= - (2. 5 1. 3) 10^-4, placing the ΛCDM limit at the 2σ region of the ν posterior. This narrow range is consistent with data from CMB (Planck), BAO (DESI), and SN Ia (DES Y5). Our result also alleviates the H₀ tension and is consistent with the previously established constraints from large-scale structure. In this kind of models there is a link between cosmology and particle physics. Our results point to possibility of a new physics, characterized by a mass spectrum lying below the Planck scale but above the values typically associated with Grand Unified Theories (GUTs).

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Cite This Study

Bertini et al. (2025) studied this question.

synapsesocial.com/papers/68f5fcce8d54a28a75cf1b11https://doi.org/10.48550/arxiv.2509.24026
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