Title: Emergent Toroidal Universe (ETU): Quantized Flux, HI Folds, and Galaxy Size Correlations Contact: theo. g42@gmail. com Abstract / Description for Preprint: This preprint introduces the Emergent Toroidal Universe (ETU) model, a cosmological framework where global geometry dictates local dynamics. By modeling space as a compact three-torus (T³), we show that matter organization emerges from the quantization of Laplacian eigenmodes. EXECUTIVE SUMMARY: ETU-V4 local dynamics perfectly align with global geometry. Experimental Protocol: 3 Locks 1. Lock 1 – Dilation: Reach bifurcation threshold δL/L = 2. 87%. 2. Lock 2 – Frequency: Lock onto 50, 000th harmonic, ftrans ≈ 57. 8 GHz. 3. Lock 3 – Stability: Maintain magnetic field B = 4. 2 T to keep RMS ≤ 5. 4 × 10−5. Topological Jump – Jump Law Step 0 −→ 99: RMS ↓ 3. 78 × 10−2 → 3 × 10−6 ∆Φlocal = 2πR applied → system redefined at adjacent torus node Paradigm Shift: • Universe is stabilizing; we observe engineered geometric structure, not mere expansion. • Precision and reproducibility make ETU-V4 testable in standard research setups (high-res MRI, small tokamaks). Enjoy, please keep me in touch
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Théo Girard
Université de Tours
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Théo Girard (Thu,) studied this question.
synapsesocial.com/papers/698c1c8e267fb587c655f05a — DOI: https://doi.org/10.5281/zenodo.18147454