A Geometric Origin for the Quantum Postulates

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Main Author: Conde, S.
Format: Recurso digital
Language:English
Published: Zenodo 2025
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author Conde, S.
author_facet Conde, S.
contents <p>Quantum mechanics is founded upon a set of operational postulates that, despite their predictive success, lack an underlying physical ontology, leading to conceptual paradoxes and hindering unification. <strong>This work presents a framework in which said postulates emerge as theorems from a single principle: the identification of particles as vibrational modes of topological defects (strings) in a T⁴ vacuum manifold. We demonstrate how wave-particle duality, superposition, entanglement, wavefunction collapse, and quantum statistics emerge as geometric and mechanical consequences of this ontology. </strong>Crucially, this framework resolves the enigma of matter generations by reinterpreting the muon and the tau not as distinct elementary particles, but as the first harmonics of the electron. The existence and the precise mass hierarchy of the generations thus become the principal experimental evidence for this underlying string ontology. The theory becomes falsifiable through predictions of subtle anharmonic effects in quantum superposition, derived from the physical nature of these vibrations.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16907945
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle A Geometric Origin for the Quantum Postulates
Conde, S.
Quantum Ontology
Topological Defects
String Ontology
Foundations of Quantum Mechanics
Problem of Generations
Wave-Particle Duality
Measurement Problem
Emergent Spacetime
Unified Field Theory
Anharmonic Oscillator
CSU
<p>Quantum mechanics is founded upon a set of operational postulates that, despite their predictive success, lack an underlying physical ontology, leading to conceptual paradoxes and hindering unification. <strong>This work presents a framework in which said postulates emerge as theorems from a single principle: the identification of particles as vibrational modes of topological defects (strings) in a T⁴ vacuum manifold. We demonstrate how wave-particle duality, superposition, entanglement, wavefunction collapse, and quantum statistics emerge as geometric and mechanical consequences of this ontology. </strong>Crucially, this framework resolves the enigma of matter generations by reinterpreting the muon and the tau not as distinct elementary particles, but as the first harmonics of the electron. The existence and the precise mass hierarchy of the generations thus become the principal experimental evidence for this underlying string ontology. The theory becomes falsifiable through predictions of subtle anharmonic effects in quantum superposition, derived from the physical nature of these vibrations.</p>
title A Geometric Origin for the Quantum Postulates
topic Quantum Ontology
Topological Defects
String Ontology
Foundations of Quantum Mechanics
Problem of Generations
Wave-Particle Duality
Measurement Problem
Emergent Spacetime
Unified Field Theory
Anharmonic Oscillator
CSU
url https://doi.org/10.5281/zenodo.16907945