Proton Charge Radius in Muonic-Hydrogen

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Bibliographic Details
Main Author: Piscedda Giampaolo
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author Piscedda Giampaolo
author_facet Piscedda Giampaolo
contents <p>This study proposes a geometric solution to the proton radius puzzle based on the theory of a dense ether and Minkowski metrics. It is demonstrated that the discrepancy between the radius measured with the electron (0,875fm) and that measured with the muon (0,84fm) is not caused by experimental error, but by a real metric contraction induced by the mass of the probe particle. Through the radial differential identity dR/dR = 1, the Minkowski volume is derived as a relativistic invariant, explaining why the scattering angle remains unchanged despite the reduction in radius. Finally, MUSE experiment at PSI is identified as the “Michelson-Morley experiment of the 21st century”, capable of detecting the variation in the muon’s velocity induced by the metric resistance of the ether. The ether was a fundamental physics problem that Albert Einstein and Hendrik Lorentz were unable to fully resolve throughout their lives.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18343640
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Proton Charge Radius in Muonic-Hydrogen
Piscedda Giampaolo
Curvature
Ether
Scalar Triple Product
Charge Radius
Michelson-Morley experiment
<p>This study proposes a geometric solution to the proton radius puzzle based on the theory of a dense ether and Minkowski metrics. It is demonstrated that the discrepancy between the radius measured with the electron (0,875fm) and that measured with the muon (0,84fm) is not caused by experimental error, but by a real metric contraction induced by the mass of the probe particle. Through the radial differential identity dR/dR = 1, the Minkowski volume is derived as a relativistic invariant, explaining why the scattering angle remains unchanged despite the reduction in radius. Finally, MUSE experiment at PSI is identified as the “Michelson-Morley experiment of the 21st century”, capable of detecting the variation in the muon’s velocity induced by the metric resistance of the ether. The ether was a fundamental physics problem that Albert Einstein and Hendrik Lorentz were unable to fully resolve throughout their lives.</p>
title Proton Charge Radius in Muonic-Hydrogen
topic Curvature
Ether
Scalar Triple Product
Charge Radius
Michelson-Morley experiment
url https://doi.org/10.5281/zenodo.18343640