Model of the Neutrino as a Torsion Wave Predicted by Ouroboros v11: From Derivation to Explanation of Unexplained Oscillations and Cosmic Telescopes

We present OUROBOROS v11 (Neutrino Extension, v2), an upgraded and fully closed wave-theoretic realization of active neutrinos within the overarching classical field framework of the universe. Transitioning from mathematical derivation to rigorous physical explanation, active neutrinos are modeled as coherent torsion-wave packets propagating through the spacetime vacuum and quantized locally at emission and absorption boundaries, following Einstein’s classic photoelectric wave-quantum insight. Governed by the toroidal volume-form geometrically fixed parameter , the exact graded framework natively derives the active neutrino mass-squared splitting ratio , matching NuFIT 6.0 normal ordering data () to within with zero continuous free parameters. Furthermore, we provide rigorous first-principles closures for all previously noted theoretical loopholes—including analytic derivations of the wave-packet localization scale (), absolute mass-floor vacuum topology (), complex manifold CP-violating phase (), and explicit group-theoretic mixing angle correlations. By integrating real IceCube point-source search catalogs (IceTracks-DR2), we demonstrate how high-energy cosmic neutrino data provides an empirical testbed for our predicted 1–10 TeV coherence crossover window. Complete replication instructions, GitHub repository links, and executable Python audit code are provided as open-science artifacts.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-09
DOI
https://doi.org/10.5281/zenodo.23265874
Primary Topic
Neutrino Physics Research
Type
preprint
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preprint

Model of the Neutrino as a Torsion Wave Predicted by Ouroboros v11: From Derivation to Explanation of Unexplained Oscillations and Cosmic Telescopes

Paul Werbos
Zenodo (CERN European Organization for Nuclear Research)
Neutrino Physics Research
preprint

Model of the Neutrino as a Torsion Wave Predicted by Ouroboros v11: From Derivation to Explanation of Unexplained Oscillations and Cosmic Telescopes

Paul Werbos
preprint en

Abstract

We present OUROBOROS v11 (Neutrino Extension, v2), an upgraded and fully closed wave-theoretic realization of active neutrinos within the overarching classical field framework of the universe. Transitioning from mathematical derivation to rigorous physical explanation, active neutrinos are modeled as coherent torsion-wave packets propagating through the spacetime vacuum and quantized locally at emission and absorption boundaries, following Einstein’s classic photoelectric wave-quantum insight. Governed by the toroidal volume-form geometrically fixed parameter , the exact graded framework natively derives the active neutrino mass-squared splitting ratio , matching NuFIT 6.0 normal ordering data () to within with zero continuous free parameters. Furthermore, we provide rigorous first-principles closures for all previously noted theoretical loopholes—including analytic derivations of the wave-packet localization scale (), absolute mass-floor vacuum topology (), complex manifold CP-violating phase (), and explicit group-theoretic mixing angle correlations. By integrating real IceCube point-source search catalogs (IceTracks-DR2), we demonstrate how high-energy cosmic neutrino data provides an empirical testbed for our predicted 1–10 TeV coherence crossover window. Complete replication instructions, GitHub repository links, and executable Python audit code are provided as open-science artifacts.

Zenodo (CERN European Organization for Nuclear Research)
U.S. National Science Foundation (US)
Neutrino Physics Research
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Model of the Neutrino as a Torsion Wave Predicted by Ouroboros v11: From Derivation to Explanation of Unexplained Oscillations and Cosmic Telescopes — Paul Werbos · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS