Magnetism, Longitudinal Vacuum Modes, and the Zeeman Effect: A Unified Derivation from the V23 Structured Vacuum

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1. Verfasser: ACOSTA PADILLA, ALFREDO LUIS
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author ACOSTA PADILLA, ALFREDO LUIS
author_facet ACOSTA PADILLA, ALFREDO LUIS
contents <p>We derive magnetic phenomena, the Zeeman effect, and neutrino masses from a single geometric framework: the Structured Vacuum Theory TVS23, where the vacuum is a discrete torsional network V23 with 23 helical channels and A5 symmetry. The magnetic field is identified as torsional density in the 19 transverse channels; the neutrino as a longitudinal standing wave in the 4 gravitational channels. All results follow with zero free parameters. Key results: (1) dipole field geometry r=C·sin²θ with critical angles at A5 symmetry axes, verified to 0.14 arcminutes; (2) discrete gradient maximum in Q(φ), resolving a √13 artifact of the continuum; (3) exact NMR quadrupolar isotropy from Ih symmetry; (4) longitudinal mode at v=c(1+α/23); (5) falsifiable resonance in icosahedral quasicrystals at 9.677 keV; (6) Landé g-factor and Zeeman splitting from the trefoil knot T(2,3); (7) neutrino masses m2=8.573 meV and m3=51.439 meV from Ry/23², with errors of 0.94% and 2.19% against NuFit 6.0.</p>
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spellingShingle Magnetism, Longitudinal Vacuum Modes, and the Zeeman Effect: A Unified Derivation from the V23 Structured Vacuum
ACOSTA PADILLA, ALFREDO LUIS
structured vacuum theory, TVS23, magnetic dipole, A5 symmetry, icosahedral symmetry, Zeeman effect, Landé g-factor, longitudinal vacuum modes, neutrino masses, torsional network, quasicrystals, Maxwell equations, knot topology, trefoil knot, dodecahedral geometry
Physics > Quantum Physics Physics > Mathematical Physics Physics > High Energy Physics - Theory Physics > General Physics
<p>We derive magnetic phenomena, the Zeeman effect, and neutrino masses from a single geometric framework: the Structured Vacuum Theory TVS23, where the vacuum is a discrete torsional network V23 with 23 helical channels and A5 symmetry. The magnetic field is identified as torsional density in the 19 transverse channels; the neutrino as a longitudinal standing wave in the 4 gravitational channels. All results follow with zero free parameters. Key results: (1) dipole field geometry r=C·sin²θ with critical angles at A5 symmetry axes, verified to 0.14 arcminutes; (2) discrete gradient maximum in Q(φ), resolving a √13 artifact of the continuum; (3) exact NMR quadrupolar isotropy from Ih symmetry; (4) longitudinal mode at v=c(1+α/23); (5) falsifiable resonance in icosahedral quasicrystals at 9.677 keV; (6) Landé g-factor and Zeeman splitting from the trefoil knot T(2,3); (7) neutrino masses m2=8.573 meV and m3=51.439 meV from Ry/23², with errors of 0.94% and 2.19% against NuFit 6.0.</p>
title Magnetism, Longitudinal Vacuum Modes, and the Zeeman Effect: A Unified Derivation from the V23 Structured Vacuum
topic structured vacuum theory, TVS23, magnetic dipole, A5 symmetry, icosahedral symmetry, Zeeman effect, Landé g-factor, longitudinal vacuum modes, neutrino masses, torsional network, quasicrystals, Maxwell equations, knot topology, trefoil knot, dodecahedral geometry
Physics > Quantum Physics Physics > Mathematical Physics Physics > High Energy Physics - Theory Physics > General Physics
url https://doi.org/10.5281/zenodo.19960748