On the Necessarily Finite Dimensions of the Electron
Osvaldo F. Schilling · viXra · 2021
In the past two years we have developed a method that allowed the association of mass, magnetic moments and elastic properties of baryons, in a way consistent with energy-flux data from protons in cosmic rays. In view of the role of Elasticity displayed in these flux data, baryons are necessarily sizeable objects ( loops of charge). Electrons follow a similar behavior. However, theories involving the electron are based upon a point-like concentration of charge and mass, which is inconsistent with Elasticity. Based upon the same set of cosmic-rays data previously used for the proton we argue that these data can be applied to demonstrate the necessarily finite dimensions of an electron, here regarded as a topological stabilized modification of quarks.