Erratum: Correction of the Delay–Stability Term in the YUV Fine-Structure Derivation

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1. Verfasser: Ortunc, Civan
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Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Ortunc, Civan
author_facet Ortunc, Civan
contents <h2> </h2> <h2>Abstract</h2> <p>In the originally released version of this work, the final expression for the fine-structure constant contained a structural misrepresentation in the delay–stability correction term. Specifically, the stability contribution was previously treated as an additive term independent of the delay structure. However, within the YUV framework, stability fluctuations do not act as a separate correction, but instead modify the effective propagation delay of phase interactions.</p> <p>This correction reflects the physical interpretation that stability-induced phase dispersion alters the effective delay network rather than contributing as an independent additive shift. Importantly, this modification preserves the conceptual structure of the model and does not affect the underlying derivation based on phase resonance, lattice topology, and delay dynamics. The corrected expression therefore provides a more accurate representation of the emergent fine-structure constant within the YUV framework.</p> <p> </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19427803
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Erratum: Correction of the Delay–Stability Term in the YUV Fine-Structure Derivation
Ortunc, Civan
quantum physics fine structure constant particle mass discrete spacetime phase field resonance model theoretical physics lattice physics emergent physics
<h2> </h2> <h2>Abstract</h2> <p>In the originally released version of this work, the final expression for the fine-structure constant contained a structural misrepresentation in the delay–stability correction term. Specifically, the stability contribution was previously treated as an additive term independent of the delay structure. However, within the YUV framework, stability fluctuations do not act as a separate correction, but instead modify the effective propagation delay of phase interactions.</p> <p>This correction reflects the physical interpretation that stability-induced phase dispersion alters the effective delay network rather than contributing as an independent additive shift. Importantly, this modification preserves the conceptual structure of the model and does not affect the underlying derivation based on phase resonance, lattice topology, and delay dynamics. The corrected expression therefore provides a more accurate representation of the emergent fine-structure constant within the YUV framework.</p> <p> </p>
title Erratum: Correction of the Delay–Stability Term in the YUV Fine-Structure Derivation
topic quantum physics fine structure constant particle mass discrete spacetime phase field resonance model theoretical physics lattice physics emergent physics
url https://doi.org/10.5281/zenodo.19427803