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◇ Open MIND2026-08-01· Neutrino

Neutrino Cluster Geometry and Electron–Neutrino Ratio within the General Connectivity Framework

Bhopinderpal (Pal) Sahota

原始摘要(英文原文)· Original abstract
This paper develops a quantitative model of matter within the General Connectivity framework, treating the vacuum as a spin‑structured neutrino Aether and electrons, protons and neutrons as stable coherence clusters of neutrino spin. The work formalises the three neutrino flavours as spin orientations, derives the triadic, hexagonal and fractal cluster geometries, and separates the discrete topological core from the volumetric coherence envelope that determines field extent. It computes the electron‑neutrino spatial ratio, the golden‑ratio shell nesting number, the coherence amplitude scaling, and the parity rule that reproduces Standard Model spin statistics. The paper interprets the Einstein‑de Haas experiment and multi‑electron creation events as macroscopic and threshold signatures of locked cluster spin and triadic resonance. Time and consciousness are treated physically as forward and backward phase‑evolution rates over the same spin geometry. The model yields explicit, falsifiable predictions for cluster structure, coherence energy, shell count and spin parity, offering a geometric medium from which particle properties may emerge.
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Neutrino Cluster Geometry and Electron–Neutrino Ratio within the General Connectivity Framework — 科研速览 Science Skim