Quantum Spin as a Temporal Curvature Effect: A Chronos Field Interpretation

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Autore principale: Hall, Matthew
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Hall, Matthew
author_facet Hall, Matthew
contents <p>This paper proposes a radical reinterpretation of quantum spin through the lens of Chronos Theory, which treats time as a structured, dynamic field (τ) with curvature and oscillatory behavior. Rather than viewing spin as an intrinsic, abstract quantum number, the paper argues that spin arises from the torsional or helical structure of time around matter. The model presents spin as a topological effect produced by rotational asymmetries and boundary locking in the time field itself. This field-based approach naturally explains phenomena such as spin-½ quantization, Pauli exclusion, and spin entanglement as consequences of temporal curvature constraints and phase interference. The paper also explores how spin may shift or decohere under time-gradient stress, offering predictions for spin anomalies in high-curvature or extreme-energy environments. A new geometric framework is introduced to derive spin from curvature eigenstates of the τ-field, linking quantum properties to spacetime structure. This reinterpretation connects quantum mechanics, relativity, and geometry in a unified time-based ontology.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16283875
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Quantum Spin as a Temporal Curvature Effect: A Chronos Field Interpretation
Hall, Matthew
Chronos Theory
quantum spin
temporal curvature
time field
τ(xµ)
spin-½ quantization
Pauli exclusion principle
spin geometry
time torsion
entanglement
spin decoherence
quantum foundations
quantum gravity
curvature eigenstates
topological spin
rotational symmetry
unified field theory
temporal helicity
<p>This paper proposes a radical reinterpretation of quantum spin through the lens of Chronos Theory, which treats time as a structured, dynamic field (τ) with curvature and oscillatory behavior. Rather than viewing spin as an intrinsic, abstract quantum number, the paper argues that spin arises from the torsional or helical structure of time around matter. The model presents spin as a topological effect produced by rotational asymmetries and boundary locking in the time field itself. This field-based approach naturally explains phenomena such as spin-½ quantization, Pauli exclusion, and spin entanglement as consequences of temporal curvature constraints and phase interference. The paper also explores how spin may shift or decohere under time-gradient stress, offering predictions for spin anomalies in high-curvature or extreme-energy environments. A new geometric framework is introduced to derive spin from curvature eigenstates of the τ-field, linking quantum properties to spacetime structure. This reinterpretation connects quantum mechanics, relativity, and geometry in a unified time-based ontology.</p>
title Quantum Spin as a Temporal Curvature Effect: A Chronos Field Interpretation
topic Chronos Theory
quantum spin
temporal curvature
time field
τ(xµ)
spin-½ quantization
Pauli exclusion principle
spin geometry
time torsion
entanglement
spin decoherence
quantum foundations
quantum gravity
curvature eigenstates
topological spin
rotational symmetry
unified field theory
temporal helicity
url https://doi.org/10.5281/zenodo.16283875