A Rotational Geometric Foundation refined for α,μ,ae,n/e mass ratio: mn/me, tau_neturon

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Autore principale: Satir, Jakob
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Satir, Jakob
author_facet Satir, Jakob
contents <p>Abstract: This paper presents a refinement and further thinking from the first paper, yielding a closed-form geometric derivation of the electron's anomalous magnetic moment (ae) achieving a 10.7 parts per trillion (ppt) agreement with the 2008 Harvard experimental result. The model (ae = 0.00115965218083) emerges from a recursive Hopf Tower rotational geometry (S4 to S3) and requires zero Feynman diagrams, renormalization, or fitted parameters. Additional derivations include the inverse fine structure constant (alpha-inv = 137.035999177) to ppt, the proton-to-electron mass ratio (mu = 1836.15267343), and even a theory for the neutron lifetime (tau_n = 877.615 s). All constants are calculated via a single harmonic geometrically regression factor, J, representing the topological grain of the 4D manifold.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19356298
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle A Rotational Geometric Foundation refined for α,μ,ae,n/e mass ratio: mn/me, tau_neturon
Satir, Jakob
fine structure constant,
proton electron mass ratio,
Hopf fibration
rotational geometry
fundamental constants
geometric physics
Anomalous Magnetic Moment
ae
QED
Precision Physics
Gabrielse 2008
<p>Abstract: This paper presents a refinement and further thinking from the first paper, yielding a closed-form geometric derivation of the electron's anomalous magnetic moment (ae) achieving a 10.7 parts per trillion (ppt) agreement with the 2008 Harvard experimental result. The model (ae = 0.00115965218083) emerges from a recursive Hopf Tower rotational geometry (S4 to S3) and requires zero Feynman diagrams, renormalization, or fitted parameters. Additional derivations include the inverse fine structure constant (alpha-inv = 137.035999177) to ppt, the proton-to-electron mass ratio (mu = 1836.15267343), and even a theory for the neutron lifetime (tau_n = 877.615 s). All constants are calculated via a single harmonic geometrically regression factor, J, representing the topological grain of the 4D manifold.</p>
title A Rotational Geometric Foundation refined for α,μ,ae,n/e mass ratio: mn/me, tau_neturon
topic fine structure constant,
proton electron mass ratio,
Hopf fibration
rotational geometry
fundamental constants
geometric physics
Anomalous Magnetic Moment
ae
QED
Precision Physics
Gabrielse 2008
url https://doi.org/10.5281/zenodo.19356298