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Development of a Magnetic Cusp Gun for Terahertz Harmonic Gyrodevices

机译:开发用于太赫兹谐波陀螺仪的电磁吸枪

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A magnetic cusp gun (MCG) is being developed to generate an axis-encircling electron beam, which is called the large orbit beam, which is going to drive a 0.396-THz fourth-harmonic gyrotron. Developing an MCG imposes crucial challenges on a simultaneously minimizing guiding center deviation and velocity spread of the electron beam, particularly because an ultrahigh magnetic compression ratio is unavoidable, as is the case for a terahertz (THz) gyrotron. The study of the electron dynamics in the MCG reveals that, close to the emitter, a pair of focusing electrodes are employed to construct a special focusing and accelerating electric field as a way to balance the space-charge influence and guiding center deviation. Investigation indicates that both the electron-beam generalized-angular-momentum spread and the guiding center distribution are the critical factors contributing to beam parameter spread. Intensive optimization generates a high-power MCG with a pitch factor of 1.5, the highest magnetic field of 4 T, minimum transverse velocity spread of 1.1%, and a beam current of 2 A. The key parameters exhibit excellent stability tuning over a wide range of beam current and magnetic field. These merits enable the harmonic gyrotrons or even the frequency-tunable THz gyrotrons to be developed.
机译:正在开发一种电磁风炮(MCG),以产生围绕轴的电子束,即大轨道束,它将驱动0.396-THz的第四谐波回旋管。开发MCG对同时最小化电子束的引导中心偏差和速度散布提出了严峻的挑战,特别是因为太赫兹(THz)回旋管的情况不可避免地会产生超高的磁压缩比。对MCG中电子动力学的研究表明,靠近发射极,使用一对聚焦电极来构建特殊的聚焦和加速电场,以平衡空间电荷的影响和引导中心偏差。研究表明,电子束的广义角动量扩展和导向中心分布都是影响电子束参数扩展的关键因素。密集优化可生成高功率MCG,其螺距因子为1.5,最大磁场为4 T,最小横向速度扩展为1.1%,束电流为2A。关键参数在宽范围内均具有出色的稳定性调节束电流和磁场。这些优点使谐波回旋管或什至可调谐的太赫兹回旋管得以开发。

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