arXiv · 1908.03843
Anomalous deflection of an electron after passing through magnetic-field zero point
Abstract
This paper reports an experiment about anomalous deflection of cathode ray in odd-symmetric magnetic field. The experiments shows that after passing through the magnetic-field zero point formed by two opposing magnetic fields, an electron deflects in the direction opposite to the Lorentz force within several tens of micrometres from the zero point. It can be explained by the inertial effect of the electron rotating on its axis in magnetic field, and Lorentz force is similar to the Magnus effect in fluid. In this paper, a mechanical model that replaces potential energy with rotational kinetic energy is used to calculate the force exerted on an electron and a proton under different conditions, and the Maxwell's equations of electromagnetic field are derived.
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Changgen Zou, Wanshou Jiang. 2019-08-11. Anomalous deflection of an electron after passing through magnetic-field zero point. https://arxiv.org/abs/1908.03843
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