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Sheet Electron Beam Transport in a Metamaterial-Loaded Waveguide Under the Uniform Magnetic Focusing

机译:均匀磁聚焦作用下超材料加载波导中的片状电子束传输

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We have theoretically investigated the transport of a sheet electron beam focused by a uniform axial magnetic field in a metamaterial-loaded waveguide. A theoretical model has been proposed to analyze the sheet electron beam transport. In this model, we have used CST simulations to obtain the mean potential on the metamaterial as the boundary condition. According to the boundary condition, the space-charge electric field and the beam curling have been theoretically analyzed. It is found that the beam curling can be greatly reduced by decreasing the spacing between the metamaterial and the sheet electron beam. This model is verified using the CST simulations. This paper can pave the way for developing brand new metamaterial-based vacuum electron devices with a sheet electron beam.
机译:从理论上讲,我们研究了超材料加载波导中受均匀轴向磁场聚焦的薄电子束的传输。提出了理论模型来分析薄板电子束传输。在此模型中,我们使用CST模拟获得超材料上的平均电势作为边界条件。根据边界条件,对空间电荷电场和电子束卷曲进行了理论分析。已经发现,通过减小超材料与薄层电子束之间的间距可以大大减少束的卷曲。使用CST模拟验证了该模型。本文可以为开发具有薄电子束的全新基于超材料的真空电子器件铺平道路。

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