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Détails bibliographiques
Auteurs principaux: Diaz Aldana, Alejandro, Diaz Luna, Raquel Esther, Diaz Luna, David Felipe
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
Sujets:
Accès en ligne:https://doi.org/10.5281/zenodo.18204600
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  • <p>The authors welcome correspondence from researchers interested in peer review, collaborative validation, or arXiv endorsement in the fields of volcanology, geology, planetary science, or extinction studies. <strong>founder@humansp.org</strong></p> <p>The Crust-Fracturing Antipodal Bullet (CFAB) Theory proposes that large cosmic impactors with metallic cores can completely penetrate Earth, triggering massive volcanism at antipodal or near-antipodal locations. This mechanism unifies three previously separate phenomena: major impact events, Large Igneous Provinces (flood basalt volcanism), and mass extinctions.</p> <p>VERSION 4.0 - This version corrects conceptual errors from previous iterations and provides refined thermodynamic analysis, improved physical modeling, and strengthened testable predictions.</p> <p>Key findings include:<br>(1) Spatial and temporal correlation between Wilkes Land crater and Siberian Traps<br>(2) Spatial and temporal correlation between Chicxulub crater and Deccan Traps  <br>(3) Physical mechanism for transporting Earth's core metals to surface (explaining Norilsk deposits)<br>(4) Only viable mechanism for kimberlite pipe formation<br>(5) Resolution of temporal gap between impacts and extinction events<br>(6) Thermodynamic analysis challenging conventional "solid inner core" interpretation</p> <p>The theory makes specific, falsifiable predictions testable through isotopic analysis, high-resolution dating, seismic tomography, and laboratory experiments.</p> <p>This is Version 4.0 of the CFAB theory. Previous versions (1.0, 2.0 and 3.0) contained errors in understanding the mechanics of metallic core transit and the state of Earth's interior. These have been corrected through rigorous thermodynamic analysis.</p> <p>The theory is proposed as a testable scientific hypothesis and welcomes rigorous peer review and experimental validation.</p> <p>Additional LIP-Impact Correlations Under Investigation:<br>Beyond the two primary case studies (Wilkes Land-Siberian Traps and Chicxulub-Deccan Traps), preliminary evidence suggests other Large Igneous Provinces with significant metal deposits may also correlate with impact events, including:<br>• Emeishan Traps (260 Ma, China) - Panzhihua Fe-Ti-V deposits<br>• Paraná-Etendeka (132 Ma, Brazil/Namibia) - Potential correlation with Morokweng impact<br>• Other metal-enriched LIPs - Systematic survey in progress<br>These additional cases strengthen the CFAB framework and provide targets for future testing.</p> <p><strong>https://orcid.org/0009-0006-1089-9023. Contact: founder@humansp.org</strong></p> <p>Part of the Proyecto A.D.A. (Architecture of Survival) series - Preprint 20.</p> <p>The Origin of the Universe: <a href="https://zenodo.org/records/20069475" rel="noopener">https://zenoThe Origin of the Universe</a>: Survival Architecture:</p> <p><a href="https://play.google.com/store/books/details?id=epWgEQAAQBAJ">https://play.google.com/store/books/details?id=epWgEQAAQBAJ</a></p> <p>Arquitectura de la supervivencia:</p> <p><a href="https://play.google.com/store/books/details/Alejandro_D%C3%ADaz_Aldana_Arquitectura_de_la_Supervive?id=DpCgEQAAQBAJ">https://play.google.com/store/books/details/Alejandro_D%C3%ADaz_Aldana_Arquitectura_de_la_Supervive?id=DpCgEQAAQBAJ</a></p> <p> </p>