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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Simulation of the electron-optical system with a field emitter for a short-wave diagnostic gyrotron
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Simulation of the electron-optical system with a field emitter for a short-wave diagnostic gyrotron

机译:带场发射器的短波诊断回旋管电子光学系统的仿真

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The operational capability of multi-tip silicon emitters with protective metal fullerene coatings in a three-electrode electron-optical system (EOS) with magnetic confinement has been studied. This EOS is intended for electron-stream generation in the diagnostic shortwave gyrotron. Three-dimensional calculations were performed using the Comsol software package. The feasibility of attainment of currents beyond 20 – 30 mA required for the diagnostic gyratron operation was shown. In the course of the calculations, the ratio of the currents falling on the control electrode and on the collector was determined. In the absence of a magnetic field, the control electrode’s current was 0.5% of the cathode’s one. No control electrode’s current existed when the values of the magnetic field induction in the region between the cathode and the control electrode were beyond 0.07 T.
机译:研究了具有磁约束的三电极电子光学系统(EOS)中具有保护性金属富勒烯涂层的多尖端硅发射极的工作能力。该EOS旨在在诊断短波回旋管中产生电子流。使用Comsol软件包执行三维计算。显示了诊断回旋管操作所需的电流超过20 – 30 mA的可行性。在计算过程中,确定了落在控制电极和集电极上的电流比率。在没有磁场的情况下,控制电极的电流是阴极电流的0.5%。当阴极和控制电极之间的区域中的磁场感应值超过0.07 T时,不存在控制电极的电流。

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