Physics & Spacearticle2026-08-15

GALACTIC NEUTRINOS AND RADIATION-INFORMATION

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Abstract

This article presents a critical-propositional analysis of Mirco Huennefeld’s 2024 Zenodo presentation Observation of High-Energy Neutrinos from the Galactic Plane and of the associated IceCube Collaboration article published in Science under DOI 10.1126/science.adc9818. The analyzed work reports evidence for high-energy neutrino emission from the Galactic plane, based on ten years of IceCube data and deep-learning-based event reconstruction. The signal, detected at approximately 4.5 sigma, is consistent with diffuse neutrino emis- sion from the Milky Way, although unresolved point sources may also contribute. This article examines the empirical and theoretical relevance of that result in confrontation with the Theory of Objectivity (TO), especially regarding the TO thesis that the tran- scendent element is knowledge or information produced in atomic and material relations, equivalent to atomic radiations. The analysis articulates the IceCube result with the foundational bibliography of TO, its recent developments on modal discipline and testa- bility, and a broader bibliography of support and dialogue in contemporary physics and philosophy of science. It argues that the detection of Galactic neutrinos does not directly prove the cosmogonic theorem of TO, but offers a powerful empirical bridge for the TO concepts of radiation-information, phenomenic elements, Inducing Effects, convergence zones, and cosmological memory. The article concludes that the analyzed work reaches a high degree of dialogue with TO, receiving a score of 8.4 out of 10. Keywords: Teoria da Objetividade; Vidamor Cabannas; Denivaldo Silva; high- energy neutrinos; IceCube; Galactic plane; radiation-information; cosmic rays; modal ontology; phenomenic elements.

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View paper (DOI)Open access versionOpenAlexOpen Science FrameworkPublished 2026-08-15

Authors: Vidamor Cabannas