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Physics
The quantum nature of the weak interaction 

Melissa B. Blau

University of Tübingen, Tübingen 72076, Germany 
Published: 2023-03-28 
https://doi.org/10.59208/sa-2023-03-28-4
Eprint: arXiv:2187.4871448

Abstract: 
From the fundamental noνα = 1 formula, the up quark was identified as an exchange particle based on its mass, which implies that the particle is newly formed and not, as the current theory says, transformed from the d quark through ß-decay. But what is then the weak interaction, if it does not convert quarks? Through the nucleon magnetic field, the movement of the charged quarks induces a Lorentz force, which produces a rotation of the nucleon perpendicular to the main axis of the quarks. This rotation is then transferred to the inner parts of the nucleon that creates the weak interaction. From this, a unified formula for the gravitation and EM forces could be deduced. 

Cite this article

Blau M.B. The quantum nature of the weak interaction. Science Advance (2023). https://doi.org/10.59208/sa-2023-03-28-4

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