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Structural Integrity-Based Regime Detection: Collision Resonance Matrices for Trans-Uranic Synthesis (Z=119-140)

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Zenodo2026-07-05 更新2026-08-01 收录
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Abstract This dataset provides a deterministic map of optimal collision resonance pathways for the synthesis of trans-uranic elements ranging from Z=119 to Z=140. Using the VeilSight system architecture, we computed the structural integrity metrics—specifically entropy (E), persistence (P), and stress (S)—across a broad projectile-target manifold. Methodology: The data was generated by calculating the Coulomb repulsion barrier for potential projectile-target combinations and evaluating the structural persistence against two primary shell closures: the established N=184 Island of Stability and the secondary theoretical N=228 shell closure. Stress values were normalized to $0.0 at the resonance threshold, identifying hyper-stable corridors for heavy element synthesis that diverge from standard predictive models. Technical Contents: veilsight_element_matrix_sweep.csv: Baseline collision geometries for Z=119-126. veilsight_island_stability_sweep.csv: Optimized resonance paths targeting the N=184 magic shell. veilsight_ultra_heavy_matrix_sweep.csv: Hyper-massive structural corridors for Z=127-140. veilsight_topography_manifold.jpg: Topological visualization of structural stability valleys versus N/Z ratios. This archive serves as formal prior art for the deterministic discovery of trans-uranic synthesis windows using structural integrity-based regime detection. Structural Integrity-Based Regime Detection and Action Suppression System for High-Risk Environments" (USPTO #63/976,790)

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Zenodo
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2026-07-05
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