遇见数据集

Temporal Desynchronization as the Core Solution to the Fermi Paradox: Quantitative Coincidence Probabilities and the Deadpool-Quantum Analogy

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Zenodo2025-12-31 更新2026-05-26 收录
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This dataset provides a quantitative resolution to the Fermi Paradox based on temporal and spatial desynchronization of technological civilizations in an expanding universe. Key points:- Technological signals are extremely brief on cosmic timescales (~100–1000 years).- The observable universe spans ~93 billion light-years, with an age of 13.8 billion years.- Probability of temporal coincidence: ~100 years window / 13 800 million years ≈ 0.0007%- Probability of spatial coincidence within the Milky Way: ~1 000 light-year bubble / ~100 000 light-year galaxy diameter ≈ 1%- Combined temporal + spatial coincidence probability ≈ 0.000007% This extremely low probability explains the "Great Silence" without requiring rare Earth hypotheses or self-destruction scenarios. The dataset includes:- Mathematical derivation of coincidence probabilities- Visual representation of light cones and delayed signals from distant events (supernovae analogy extended to technosignatures)- Deadpool-Quantum Analogy: "It's like throwing a dart blindfolded from Mexico City to New York and hitting a specific atom on the Statue of Liberty." The analogy illustrates the absurdity of expecting perfect spatiotemporal overlap in a vast, ancient universe. This work integrates with the author's broader Temporal Coherence framework (CRCT / SU-CTM), previously validated in geomagnetic and astrobiological contexts (see related DOIs). Fully reproducible. No external data required beyond basic calculations. License: Creative Commons Attribution 4.0 International (CC BY 4.0)Author: Joel Emiliano Valdivia Muñoz (Independent Researcher)Date: January 2026

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2025-12-31
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