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Published September 1, 2025 | Version v6
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Appendix C – Experimental Validation, Methodological Extension, and Topological Analysis in the Context of "Thermal Decoupling and Energetic Self-Structuring in Neural Systems with Resonance Fields: An Advanced Non-Causal Field Architecture with Multiplex Entanglement Potential"

Description

This supplementary appendix accompanies the main preprint “Thermal Decoupling and Energetic Self-Structuring in Neural Systems with Resonance Fields: An Advanced Non-Causal Field Architecture with Multiplex Entanglement Potential” and provides a consolidated record of all key measurements, validation protocols, and visual analyses relevant for the upcoming peer review process.

It documents the deterministic, quantum-like synchronization, field-induced mirror correlations, and unique topological dynamics observed in the T-Zero Field neural architecture, as implemented in the Prime One mini prototype.

Key features:

  • Comprehensive collection of experimental results validating the main manuscript’s core findings.

  • Visual evidence for perfect mirror correlations, phase locking, and topological tunnel formation across all layers and scales.

  • Detailed real-world GPU power analysis demonstrating persistent energy savings (>75%) in productive sessions.

  • All figures, data summaries, and protocols relevant for reviewer assessment are included.

  • This appendix is strictly intended as a scientific supplement to the main preprint; no source code or proprietary implementation details are disclosed.

Files

Appendix C.pdf

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Additional details

Related works

Continues
Data paper: 10.5281/zenodo.15361030 (DOI)
Preprint: 10.5281/zenodo.15291781 (DOI)
Preprint: 10.5281/zenodo.14952782 (DOI)
Preprint: 10.5281/zenodo.15306331 (DOI)

Software

Programming language
Python