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Simulation of a multistage depressed collector with secondary electron emission for a MW-class gyrotron at 170 GHz

机译:用170GHz的MW级陀螺仪的二级电子发射模拟多级抑制收集器

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摘要

This paper presents the simulation results of a multistage depressed collector for a MW-class gyrotron. The energy distribution of spent electrons is obtained by a beam–wave interaction code. By increasing the number of depressed electrodes, the maximum collection efficiency can be increased to 81% with a low percentage of backstreaming 0.04% with regard to a four-stage depressed collector. By considering the secondary electron emission, the effects of different kinds of secondary electrons are simulated in the CST software, which is developed by Computer Simulation Technology Company in Germany. In order to reduce bad effects of secondary electrons, the structure of the fourth depressed electrode has been adjusted to form a slope. The axial length and slant angle of the slope have been optimized. The results indicate that the collection efficiency can exceed 70% and the percentage of backstreaming is less than 1%. Besides, in view of the limited power capacity of the collector wall, a magnetic field sweeping system has been introduced. The maximum power density is reduced to 392?W/cm 2 , and the deposited length of the electron beam trajectory is 470 mm.
机译:本文介绍了MW级陀螺仪的多级抑制收集器的仿真结果。废电子的能量分布通过光波相互作用代码获得。通过增加凹陷电极的数量,最大收集效率可以增加到81%,并且对于四阶段凹陷的集电体,低0.04%的低0.04%的百分比。通过考虑二次电子发射,在CST软件中模拟了不同种类的二次电子的影响,该软件是由德国计算机仿真技术公司开发的。为了减少二次电子的不良影响,已经调节了第四凹陷电极的结构以形成斜率。斜率的轴向长度和倾斜角度已经过优化。结果表明,收集效率可能超过70%,隔离率的百分比小于1%。此外,考虑到收集壁的有限功率容量,已经引入了磁场扫描系统。最大功率密度减小到392?W / cm 2,并且电子束轨迹的沉积长度为470mm。

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