A Rotational Geometric Foundation for α and μ

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Auteur principal: Satir, Jakob
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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author Satir, Jakob
author_facet Satir, Jakob
contents <p>A single postulate — that physical reality is fundamentally rotational, such that no displacement exists independently of rotation from a center — forces π as the unique and only admissible unit of the resulting space. From this postulate alone, and without importing any physical assumptions, we derive a geometric correction factor J and demonstrate that both the fine structure constant α and the proton-to-electron mass ratio μ emerge from the same J with opposite dimensional orientations. Numerical agreement with experimental values is achieved to 17 parts per billion for α⁻¹ and to 10 decimal places for μ. The relationship between α and μ through J is structural rather than coincidental, representing the first proposed geometric mechanism connecting these two previously unrelated fundamental constants. U(1) gauge symmetry and the geometric structure of general relativity follow as natural consequences of the rotational postulate.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18689147
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle A Rotational Geometric Foundation for α and μ
Satir, Jakob
fine structure constant,
proton electron mass ratio,
Hopf fibration
rotational geometry
fundamental constants
geometric physics
<p>A single postulate — that physical reality is fundamentally rotational, such that no displacement exists independently of rotation from a center — forces π as the unique and only admissible unit of the resulting space. From this postulate alone, and without importing any physical assumptions, we derive a geometric correction factor J and demonstrate that both the fine structure constant α and the proton-to-electron mass ratio μ emerge from the same J with opposite dimensional orientations. Numerical agreement with experimental values is achieved to 17 parts per billion for α⁻¹ and to 10 decimal places for μ. The relationship between α and μ through J is structural rather than coincidental, representing the first proposed geometric mechanism connecting these two previously unrelated fundamental constants. U(1) gauge symmetry and the geometric structure of general relativity follow as natural consequences of the rotational postulate.</p>
title A Rotational Geometric Foundation for α and μ
topic fine structure constant,
proton electron mass ratio,
Hopf fibration
rotational geometry
fundamental constants
geometric physics
url https://doi.org/10.5281/zenodo.18689147