Geometric Origin of Standard Model Parameters by BNC

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Main Author: Takahashi, Tamiyuki
Format: Recurso digital
Language:English
Published: Zenodo 2025
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author Takahashi, Tamiyuki
author_facet Takahashi, Tamiyuki
contents <p>This paper proposes an approach to reduce the Standard Model's structure and parameters to geometric necessity within the framework of Bulk Network Cosmology (BNC) theory. It theoretically formalizes the mechanism by which emergent particle species are naturally generated from the dynamic structure of the spatial tensor field. The research systematically describes the correspondence relationships for gauge groups, spin, and mass based on emergent structures. The falsifiability of the theory is ensured through statistical verification of particle distributions with experiments such as Auger, TA, IceCube, and DUNE. Furthermore, the potential for application to the Yang-Mills mass gap and composite particle states is presented. The outlook is expanded to a collaborative intelligence model between humans and machines through a philosophical redefinition based on emergence and structuralism. Thus, BNC is positioned as a comprehensive framework that not only reconstructs theoretical physics but also leads to innovation in scientific epistemology.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16753888
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Geometric Origin of Standard Model Parameters by BNC
Takahashi, Tamiyuki
Standard Model
Particle Physics
Bulk Network Cosmology (BNC)
Topological Defects
Gauge Theory
Yang-Mills Mass Gap
Quantum Fields
Cosmology
Artificial Intelligence (AI)
Structural Realism
Mass Generation
<p>This paper proposes an approach to reduce the Standard Model's structure and parameters to geometric necessity within the framework of Bulk Network Cosmology (BNC) theory. It theoretically formalizes the mechanism by which emergent particle species are naturally generated from the dynamic structure of the spatial tensor field. The research systematically describes the correspondence relationships for gauge groups, spin, and mass based on emergent structures. The falsifiability of the theory is ensured through statistical verification of particle distributions with experiments such as Auger, TA, IceCube, and DUNE. Furthermore, the potential for application to the Yang-Mills mass gap and composite particle states is presented. The outlook is expanded to a collaborative intelligence model between humans and machines through a philosophical redefinition based on emergence and structuralism. Thus, BNC is positioned as a comprehensive framework that not only reconstructs theoretical physics but also leads to innovation in scientific epistemology.</p>
title Geometric Origin of Standard Model Parameters by BNC
topic Standard Model
Particle Physics
Bulk Network Cosmology (BNC)
Topological Defects
Gauge Theory
Yang-Mills Mass Gap
Quantum Fields
Cosmology
Artificial Intelligence (AI)
Structural Realism
Mass Generation
url https://doi.org/10.5281/zenodo.16753888