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February 16, 20260 citationsOpen Access

The Invariant Measure Framework: Z = Ω/d as a Zero-Parameter Unification of Cosmological and Particle Physics Observables

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ADAndrew Conley DormanJSJames Edward Steckler

Key Points

  • The aim is to present a framework that derives multiple physical observables from a single identification with no free parameters.
  • Developed a geometric framework based on the partition function Z = Ω(S²)/d.
  • Decomposed gravitational coupling with defined parameters in a four-dimensional spacetime.
  • Utilized a noncommutative fuzzy sphere to derive predictions across multiple domains.
  • Combined fit analysis of 35 predictions to assess consistency and accuracy.
  • Predictions span cosmological and particle physics domains, including dark energy and Higgs mass.
  • Resolved sound horizon tension significantly from 1.74σ to 0.01σ.
  • Achieved a combined fit with χ²/dof = 0.55, indicating a high level of model compatibility.

Abstract

A geometric framework deriving 35 testable physical observables from a single identification: the partition function Z = Ω (S²) /d = 4π/4 = π, with zero free parameters. The framework decomposes the gravitational coupling 8πG = 2dZG (d = 4 spacetime dimensions, Z = π) and constructs all predictions from the noncommutative fuzzy sphere S²₍=₃ (N = 3 fermion generations). Predictions span nine domains: cosmological parameters (Ωm = 1/π, Ωk = 1/32π³), dark energy dynamics (w (z) = −1 + (1/π) cos (πz), predicting phantom crossing at z ≈ 0. 5 consistent with DESI DR2), CMB observables (ns, As, τ), particle physics (Higgs mass to 0. 12σ from geometry via λₚhys = (π/24) (1 − 1/ (Nπ) ²), giving mH = v√ (2λₚhys) = 125. 27 GeV), gauge coupling corrections, and the CKM matrix. A fuzzy sphere distance correction δ²/d = 1/324, derived from the same noncommutative structure used in the Higgs mass prediction, resolves the sound horizon tension from 1. 74σ to 0. 01σ. Combined fit across all 35 predictions: χ²/dof = 0. 55, p = 0. 986. The identification Z = Ω (S²) /d = π is motivated by the thermodynamic interpretation of the Einstein field equations (Jacobson 1995) and independently confirmed via Hawking temperature, Bekenstein-Hawking entropy, and the Chamseddine-Connes spectral action. All input parameters are geometric (d, Z, N, β = 1/π, δ = 1/N²). No fitting. CAMB-validated. Preprint. Peer review invited.

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Cite This Study

Dorman et al. (2026) studied this question.

synapsesocial.com/papers/6992b3ca9b75e639e9b089dchttps://doi.org/10.5281/zenodo.18627122
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Also Consider

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

  1. 1The Information-Metric Hypothesis: Standard Model Parameters from Holographic Compaction on S³/Z₂ at Five Bulk Dimensions2026
  2. 2THE CYCLIC ZETA FRAMEWORK2026
  3. 3One Geometry, Three Frameworks2026
  4. 4Title: The Information-Metric Hypothesis: Standard Model Parameters from Holographic Compaction on S³/Z₂ at D = 52026
  5. 5Paper CXCII: Independent FLRW Consistency Tests Three recent papers by Koksbang, Heinesen, and Clifton (arXiv:2604.05836, 2604.05822, statistic σ(z), its integral Ω(z), and a density estimator2026