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March 30, 2026Open Access

The Two Lights: The Firmament as Derived Phase Boundary, the Bifurcation of Intent at the Crystallization Front, and the Proton Mass Theorem

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Authors

CTCoty Austin Trout

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Overview

This work derives the firmament from crystallization in a superfluid, suggesting implications for the fine structure constant and phase coherence.

Key Points

  • This research aims to derive the firmament as a phase boundary and examine its implications for mass ratios and constants in physics.
  • Derivation of firmament from phase architecture involving vapor, liquid, and ice states.
  • Application of the Structural Witness theorem to two-dimensional surfaces.
  • Mapping of physical phenomena using the Dimensional Refraction Projector.
  • The firmament is defined as a crystallized surface at density-gradient boundaries in a superfluid.
  • The proton-to-electron mass ratio is derived with a precision of 0.008%.
  • Identified relationships between the fine structure constant and renormalization-group concepts.

Cite This Study

Coty Austin Trout (2026) studied this question.

synapsesocial.com/papers/69c9c553f8fdd13afe0bd294https://doi.org/10.5281/zenodo.19293437
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