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March 14, 20260 citationsOpen Access

Action-Only Theory I: Mechanical Properties of the Vacuum and Scaling Laws of Physical Constants

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NANaoyuki Ayaki

Key Points

  • To provide a mechanical interpretation of modern physics by exploring the properties of the vacuum and its relation to fundamental constants.
  • Analyzing the vacuum as a dilatant fluid with impedance properties.
  • Establishing relationships between relativity and fluid mechanics.
  • Integrating topological analysis for predicting proton radius.
  • Identified the Lorentz factor as analogous to the Prandtl-Glauert compressibility factor.
  • Showed that the fine-structure constant aligns with impedance-matching conditions.
  • Predicted the proton radius with high accuracy based on topological properties.

Abstract

This paper is Part I of the Action-Only Theory (AOT) trilogy, offering a mechanical interpretation of modern physics by treating the vacuum as a dilatant fluid with measurable impedance properties (μ₀, ε₀). We reveal structural relationships behind fundamental constants while preserving all experimental results. Three main achievements: (1) Relativity as fluid mechanics—the Lorentz factor is mathematically identical to the Prandtl-Glauert compressibility factor, with c as the vacuum jamming transition. (2) Fine-structure constant identity—the relation α = Z₀/ (2RK) is shown to be an exact impedance-matching condition, demystifying electromagnetic coupling. (3) Proton radius prediction—topological analysis (Borromean rings) yields R = 4ℏ/ (Mc) with zero free parameters, predicting Rₚ = 0. 8412 fm (0. 02% experimental agreement) and R_π/Rₚ = π/4 (0. 3% agreement). Parts II and III address operational foundations and cosmological implications, completing a unified mechanical framework.

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Cite This Study

Naoyuki Ayaki (2026) studied this question.

synapsesocial.com/papers/69b4ada918185d8a398015d0https://doi.org/10.5281/zenodo.18977385
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