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March 13, 20260 citationsOpen Access

Toward a Deterministic Astrophysics: Validation of the PR-TAU v2.2 Torsion Formalism through Multi-Scale Analysis of Stellar and Galactic Systems

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PMPascal Moulin

Key Points

  • This research aims to validate the PR-TAU Torsion formalism as a deterministic model for orbital formation across various astronomical scales.
  • Utilized the Quantum-Astro v2.2 computing engine for analysis.
  • Applied the vacuum rigidity constant epsilon on stellar and galactic systems.
  • Analyzed data from solar neighborhood to the Galactic Center and extragalactic systems.
  • Demonstrated consistent mass distribution and orbital periods following a structural law of octaves.
  • Achieved observed correlations exceeding 99%, indicating predictive power of the model.
  • Suggested that the vacuum structure influences the formation of matter.

Abstract

This article presents the validation results of the Quantum-Astro v2.2 computing engine, based on the proprietary PR-TAU Torsion formalism. In contrast to Bayesian probabilistic approaches, this model proposes a deterministic interpretation of orbital formation. By applying a vacuum rigidity constant epsilon across various scales—from the solar neighborhood (GJ 887, Ross 154) to the Galactic Center (Sgr A*) and extragalactic systems (M51)—we demonstrate that the distribution of mass and orbital periods follows a structural Law of Octaves. The observed correlations, systematically exceeding 99%, suggest that the structure of the vacuum precedes and dictates the crystallization of matter. Cet article présente les résultats de validation du moteur de calcul Quantum-Astro v2.2, basé sur le formalisme propriétaire de Torsion PR-TAU. Contrairement aux approches probabilistes bayésiennes, ce modèle propose une lecture déterministe de la formation orbitale. En appliquant une constante de rigidité du vide epsilon à différentes échelles — du voisinage solaire (GJ 887, Ross 154) au centre galactique (Sgr A*) jusqu'aux systèmes extragalactiques (M51) — nous démontrons que la répartition de la masse et des périodes orbitales suit une Loi des Octaves structurale. Les corrélations observées, dépassant systématiquement les 99%, suggèrent que la structure du vide précède et dicte la cristallisation de la matière.

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Cite This Study

Pascal Moulin (2026) studied this question.

synapsesocial.com/papers/69b3ace502a1e69014ccef71https://doi.org/10.5281/zenodo.18963117
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