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February 5, 20260 citationsOpen Access

The Shattered Crystal Architecture: A Unified Multi-Phase Framework for Cosmological Evolution v8.5

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BWBenjamin S. Wilbur

Key Points

  • The research aims to establish a unified framework for cosmological evolution through multi-phase transitions.
  • Developed the Shattered Crystal Architecture (SCA) version 8.1.
  • Utilized Landau-Ginzburg potential for transition mechanics.
  • Defined Lagrangians for states between superfluidity and crystalline phases.
  • Set constraints based on observational data and Big Bang nucleosynthesis.
  • Improved consistency concerning electron mass scales.
  • Demonstrated explicit phase dynamics between different states.
  • Provided a mathematically testable alternative to ΛCDM parameters.

Abstract

The Shattered Crystal Architecture (SCA) Version 8.1 presents a formal cosmological framework aimed at Grand Unification. This paper establishes the transition mechanics between the Superfluid, Condensate, and Crystalline phases using an integrated Landau-Ginzburg Potential. Significant advancements in this version include: Matter Sector Stabilization: Improved consistency for electron mass scales. Phase Dynamics: Explicit Lagrangians for transition states between superfluidity and crystalline structures. Observational Grounding: Derived constraints compliant with Big Bang Nucleosynthesis (BBN) and the mechanical signatures of FRB Starquakes. The model provides a mathematical path toward reconciling quantum-scale phase transitions with macroscopic cosmological observation, offering a testable alternative to standard ΛCDM parameters.

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Cite This Study

Benjamin S. Wilbur (2026) studied this question.

synapsesocial.com/papers/698434dff1d9ada3c1fb3786https://doi.org/10.5281/zenodo.18462950
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Also Consider

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  5. 5The Crystal Bubble Model (CBM): A Sequential Phase Transition Approach to High-Energy Density States and Planck-Scale Geometrodynamics Version 2.02026