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Topological Yield Mapping: Proving the Dominance of Spatial Stacking over Chemical Bonding in Adversarial Datasets

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Zenodo2026-06-12 更新2026-06-17 收录
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This dataset provides empirical, high-dimensional proof that classical assumptions regarding chemical bond strength (A-T vs. G-C) are insufficient for determining structural integrity under adversarial data stress. Utilizing the VeilSight Action Suppression Controller—a deterministic, Tabula Rasa governance engine—DNA structures (e.g., 1BNA, 1D66, 1D87) were subjected to escalating adversarial variance. Structural geometric invariants (base-pair twist angles) were extracted and projected into a 1024-dimensional orthonormal tensor space to detect mathematical singularities at a strict 25.0° fracture limit. The findings establish a "Structural Yield Atlas" demonstrating that topological spatial stacking ("The Core Vault") overwhelmingly dictates cryptographic hardness, while physical edges ("Terminal Fraying") fail at significantly lower stress thresholds regardless of hydrogen bond count. Furthermore, this dataset includes a novel V11 Quantum Entanglement Signature (.qasm), translating these specific biological yield limits into a directly executable quantum cryptographic circuit.

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Zenodo
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2026-06-12
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