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March 30, 20260 citationsOpen Access

Topological Resonance Theory: Zero-Parameter Predictions from Algebraic Geometry (Papers 1-5)

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GIGiulio Imparato

Key Points

  • This research aims to develop a framework called Topological Resonance Theory (TRT) that links physical constants through algebraic constraints.
  • Five self-contained papers addressing different aspects of TRT.
  • Derivation of constants using algebraic constraints without adjustable parameters.
  • Verification of claims using Python scripts.
  • Algebraic foundations show that ξ·φ·π = 1.
  • The inverse fine-structure constant is derived with 12 ppm accuracy.
  • The Barbero-Immirzi parameter is established as γ = φπ.

Abstract

We present five self-contained papers developing Topological Resonance Theory (TRT), a framework in which physical constants are derived from a single algebraic constraint linking the golden ratio φ = (1+√5)/2, the circle constant π, and a topological constant ξ = 1/(φπ) ≈ 0.1967. The theory uses zero adjustable parameters. Paper 1 derives the algebraic foundations: ξ·φ·π = 1 Paper 2 derives the inverse fine-structure constant as α⁻¹ = (φπ)³ + 2π − 3ξ = 137.038 (12 ppm accuracy). Paper 3 links the Weinberg and Koide angles via a constrained identity verified to 0.022%. Paper 4 fixes the Barbero-Immirzi parameter as γ = φπ Paper 5 derives dark energy density ΩΛ = φ²/3 ≈ 0.873 (tree-level), corrected to 0.657 (4.1% vs Planck 2018). All claims are verified by companion Python scripts. Combined probability of coincidence: P < 10⁻¹³. Package includes: 5 PDFs, 5 LaTeX sources, and 5 Python verification scripts

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Cite This Study

Giulio Imparato (2026) studied this question.

synapsesocial.com/papers/69c9c553f8fdd13afe0bd4d4https://doi.org/10.5281/zenodo.19283197
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