Emergent Mass and Coupling Ratios from Resonant Knot Solitons in R-Theory (Work Model) Methods + reproducibility upgrade

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Main Author: ten Napel, Rob
Format: Recurso digital
Published: Zenodo 2026
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author ten Napel, Rob
author_facet ten Napel, Rob
contents <p>This record is the reproducibility-focused companion to the R-Theory work model on emergent mass and coupling ratios from resonant knot solitons. It is written as a practical “cookbook” for independently reproducing the numerical pipeline: how knot sectors are initialized and stabilized, how the topological charge Q is monitored (to prevent topology loss), and how convergence and failure modes are diagnosed.<span> </span></p> <p> </p> <p>The document specifies recommended simulation choices (domain size, boundary handling, discretization), the relaxation / energy-minimization procedure, and a minimal set of reporting outputs (energy metrics, stability indicators, and sanity checks) so results can be compared across implementations without hidden tuning. Appendices include implementation-ready expressions and method notes aimed at reducing ambiguity and “researcher degrees of freedom.”<span> </span></p> <p> </p> <p>In short: this record exists to make the broader claim testable—either others can reproduce the spectrum and ratios under stated conditions, or they can show precisely where/why it fails. <span> </span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18116003
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Emergent Mass and Coupling Ratios from Resonant Knot Solitons in R-Theory (Work Model) Methods + reproducibility upgrade
ten Napel, Rob
<p>This record is the reproducibility-focused companion to the R-Theory work model on emergent mass and coupling ratios from resonant knot solitons. It is written as a practical “cookbook” for independently reproducing the numerical pipeline: how knot sectors are initialized and stabilized, how the topological charge Q is monitored (to prevent topology loss), and how convergence and failure modes are diagnosed.<span> </span></p> <p> </p> <p>The document specifies recommended simulation choices (domain size, boundary handling, discretization), the relaxation / energy-minimization procedure, and a minimal set of reporting outputs (energy metrics, stability indicators, and sanity checks) so results can be compared across implementations without hidden tuning. Appendices include implementation-ready expressions and method notes aimed at reducing ambiguity and “researcher degrees of freedom.”<span> </span></p> <p> </p> <p>In short: this record exists to make the broader claim testable—either others can reproduce the spectrum and ratios under stated conditions, or they can show precisely where/why it fails. <span> </span></p>
title Emergent Mass and Coupling Ratios from Resonant Knot Solitons in R-Theory (Work Model) Methods + reproducibility upgrade
url https://doi.org/10.5281/zenodo.18116003