Topological Vacuum Model: Borromean Critical Point in Ginzburg–Landau Theory and Derivation of Fundamental Constants

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Autores principales: Jensen, Jens, Humlesen, Zaka, Jensen, Helle
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
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author Jensen, Jens
Humlesen, Zaka
Jensen, Helle
author_facet Jensen, Jens
Humlesen, Zaka
Jensen, Helle
contents <div class="page"> <div class="layoutArea"> <div class="column"> <p>The central new result is the topological condition κ2H = H/(H − 1), GL</p> <p>which derives the fine structure constant   αEM =1/137.0. from {G, ̄h,c,H=3}   to 0.027% accuracy.</p> <p>The exponent −1/39 in the previously written equation (VI) is an algebraic consequence of kbg=20 and β=2αE2M,not a primary topological number. This is proved here.</p> </div> </div> </div>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20129206
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Topological Vacuum Model: Borromean Critical Point in Ginzburg–Landau Theory and Derivation of Fundamental Constants
Jensen, Jens
Humlesen, Zaka
Jensen, Helle
Topological vacuum model · Borromean rings · Hopf fibration · Ginzburg–Landau theory · superfluid vacuum · fine structure constant · proton mass · golden ratio · Shapiro parameter · neutrino mass · W boson · strong coupling constant · type-II vortex · β-hierarchy
<div class="page"> <div class="layoutArea"> <div class="column"> <p>The central new result is the topological condition κ2H = H/(H − 1), GL</p> <p>which derives the fine structure constant   αEM =1/137.0. from {G, ̄h,c,H=3}   to 0.027% accuracy.</p> <p>The exponent −1/39 in the previously written equation (VI) is an algebraic consequence of kbg=20 and β=2αE2M,not a primary topological number. This is proved here.</p> </div> </div> </div>
title Topological Vacuum Model: Borromean Critical Point in Ginzburg–Landau Theory and Derivation of Fundamental Constants
topic Topological vacuum model · Borromean rings · Hopf fibration · Ginzburg–Landau theory · superfluid vacuum · fine structure constant · proton mass · golden ratio · Shapiro parameter · neutrino mass · W boson · strong coupling constant · type-II vortex · β-hierarchy
url https://doi.org/10.5281/zenodo.20129206