遇见数据集

Dataset for Detection of Extreme Quantum Phase Anomalies and Superluminal Doppler Signatures Using Quantum Computing: The Dionísio Effect

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Zenodo2025-06-13 更新2026-05-26 收录
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This dataset contains the complete experimental data, analysis code, and visualizations from the first detection of apparent faster-than-light motion using quantum computing. On June 6, 2025, at 03:14:31 UTC, our quantum sensing array in Brussels detected unprecedented anomalies suggesting the presence of objects exhibiting controlled acceleration from +0.6045c to -0.9998c. The package includes:- Raw quantum measurement data from the detection event- Processed data showing the 168.5x quantum phase suppression- Analysis code (Python/Qiskit) for reproducing all results- 11 high-resolution figures showing key findings- Supplementary analysis reports- Patent documentation (US Application #63/822,834) Key discoveries documented in this dataset:1. The Dionísio Effect: Mathematical relationship between quantum decoherence and geomagnetic activity during gravitational anomalies2. Detection of objects with impossible velocity profiles (deceleration from 0.6c, stop, acceleration to 0.9998c in opposite direction)3. Evidence of Alcubierre-type warp bubble geometry4. 23-sigma statistical significance This data supports the findings presented in our paper (to be published) and enables independent verification of potentially the most significant physics discovery of the 21st century. Geospatial coverage: Brussels, Belgium (50.85°N, 4.35°E) Temporal coverage: 2025-06-06T02:00:00Z/2025-06-06T05:00:00Z

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Zenodo
创建时间:
2025-06-13
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