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| Influence of Electrode Radius on Electron Motion in Orthogonal Electromagnetic Fields |
| SU Yafeng 1* ,CHEN Hesheng 2 ,WANG Xing 1
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1.School of Physics,Xi'an Jiaotong University,Xi'an 710049,China;2.College of Physics Science and Technology,Yangzhou
University,Yangzhou 225009,China
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Abstract The fourth-order Runge-Kutta method is used to calculate the trajectories of electrons under different cathode and anode radii in orthogonal electromagnetic fields.The calculation results show that when the cathode radius is small,the electrons perform a "figure 8" rotation curve motion,and when the cathode radius is large,it shows an approximate semicircular bounce motion behaviour.The larger the cathode radius,the greater the radius of curvature of the electron's motion curve near the anode.The larger the anode radius,the smaller the radius of curvature of the curve of the electron near the anode.This numerical simulation experiment not only visually shows the motion behaviour of electrons,but also makes up for the limitations of solid experiments in controlling parameter changes.
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Published: 25 October 2025
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