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April 11, 20260 citationsOpen Access

A Parameter-Free Prediction of the Dark Energy Fraction from the U-Cell Model

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NPNorbert Prebeck

Key Points

  • The aim is to provide a parameter-free prediction for the dark energy fraction using the U-Cell Model.
  • Derived predictions through a plate-tectonics analogy for cosmic structure formation
  • Analyzed void and halo interactions with respect to cosmic structures
  • Evaluated dark energy equation of state at various redshifts
  • Predicted dark energy fraction Omega_Lambda = 0.6834, closely matching Planck 2018 findings
  • Prediction remains consistent across all redshifts due to cancellation of the Hubble rate
  • Single constant f_cold governs both galactic acceleration and cosmic energy budget

Abstract

Ω_Λ We derive a parameter-free prediction for the dark energy fraction from the U-Cell Model (UCM) via a plate-tectonics analogy for cosmic structure formation. Voids create new substrate cells at the Hubble rate H0, while halos absorb substrate at the orbital angular frequency, which is universal and independent of the individual galaxy's rotation speed. The steady-state balance yields OmegaLambda = sqrt (2) / (sqrt (2) + sqrt (2 - pi/2) ) = 0. 6834, in agreement with Planck 2018 (OmegaLambda = 0. 6847) to 0. 19%. Because H0 cancels in the balance, the prediction holds for all redshifts, corresponding to a dark energy equation of state w = -1 exactly. The single UCM constant fcold = sqrt (2 - pi/2) simultaneously governs the galactic MDAR acceleration scale g† = fcold⁴ · c · H0 and the cosmic energy budget, providing the strongest internal consistency test of the model. No free parameters are introduced.

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Cite This Study

Norbert Prebeck (2026) studied this question.

synapsesocial.com/papers/69d9e67a78050d08c1b76dachttps://doi.org/10.5281/zenodo.19484605
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