This article presents a comprehensive critical-propositional analysis of Mauricio Bustamante’s presentation, Physics beyond the Standard Model with High-Energy Cosmic Neutrinos, published on Zenodo in 2024. The study examines the scientific potential of high-energy and ultra-high-energy cosmic neutrinos as probes of fundamental physics, including neutrino-matter cross sections beyond accelerator energies, flavor composition, neutrino decay, secret interactions, propagation over cosmological distances, and possible signatures of physics beyond the Standard Model. The analysis places Bustamante’s work in dialogue with the foundational and recent bibliography of the Theory of Objectivity (TO), especially its seven Absolute Truths, modal necessity, phenomenic elements, Expansive and Reductive Inductive Effects, cosmogonic theorem, and cosmological Eras. Particular attention is given to the distinction between modal necessity, physical modeling, empirical prediction, and experimental corroboration. The article identifies significant conceptual convergence between cosmic-neutrino physics and the TO in relation to boundaries, distinguishability, relational observation, information transport, physical recording, and the transformation of physical signals into scientific knowledge. It also discusses points of tension involving the elementary status of neutrinos, the interpretation of individualizing fields, the meaning of composition, and the proposed equivalence among information, knowledge, and atomic radiation. Empirical studies associated with IceCube are examined as possible operational bridges for the TO. Current measurements of the neutrino-nucleon cross section and searches for secret neutrino interactions are shown to be broadly compatible with the Standard Model and to constrain new-physics hypotheses. These results do not directly confirm the modal or cosmogonic core of the TO, but they define concrete observational channels through which future quantitative predictions derived from the theory could be tested. The article proposes a TO-neutrino research program based on formal correspondence rules, propagation models, flavor predictions, energy-dependent effects, multimessenger observations, previously registered predictions, and explicit failure criteria. Bustamante’s work is ultimately assessed as having a dialogue score of 7.0 out of 10 in relation to the Theory of Objectivity, due primarily to its strong operational emphasis on information, relations, boundaries, and testability. This analysis received analytical support from ChatGPT. Keywords: Theory of Objectivity; Vidamor Cabannas; Denivaldo Silva; Mauricio Bustamante; high-energy cosmic neutrinos; ultra-high-energy neutrinos; physics beyond the Standard Model; neutrino flavor composition; neutrino-nucleon cross section; secret neutrino interactions; IceCube; modal necessity; physical information; phenomenic elements; Expansive Inductive Effect; Reductive Inductive Effect; cosmogonic theorem; cosmological Eras; empirical testability; multimessenger astronomy; ChatGPT-assisted analysis.
Cabannas et al. (Sun,) studied this question.
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