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Design, simulation and experiment of a cusp electron beam for millimeter wave gyro-devices

机译:毫米波陀螺仪尖端电子束的设计,仿真与实验

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摘要

The design, simulation and experiment of a thermionic cusp electron gun that is to be used for millimeter wave generation will be presented. A cusp gun uses a non-adiabatic magnetic field reversal to obtain azimuthal motion on an electron beam resulting in an annular shaped, axis-encircling beam. The cusp gun was designed to generate a beam of 1.5A at 40kV with an adjustable velocity ratio of up to 3.0. The beam had a simulated axial velocity spread of 7.4% and alpha spread of 10.1%. The beam had an averaged radius of 0.35mm and beam thickness of 0.05mm which is ideal to drive sub-mm wave gyro-devices under investigation.
机译:将介绍用于毫米波产生的热电子尖端电子枪的设计,仿真和实验。尖头枪使用非绝热磁场反转,以在电子束上获得方位角运动,从而产生环形的轴向环绕的束。尖头枪的设计目的是在40kV时产生1.5A的光束,可调速比最大为3.0。光束的模拟轴向速度扩展为7.4%,α扩展为10.1%。光束的平均半径为0.35mm,光束厚度为0.05mm,是驱动研究中的亚毫米波陀螺仪的理想选择。

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