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一种双聚焦极双栅电子枪的设计

Design of a Double Focusing Pole Double Grid Electron Gun

  • 摘要: 本文主要设计了一种使用六棱锥内嵌圆柱体阴极结构的场发射冷阴极电子枪,通过Computer Simulation Technology粒子工作室软件对该电子枪的阳极电流和焦点尺寸进行仿真模拟,进而不断优化该电子枪的结构,最终设计出一款有效焦点尺寸约为20 μm,阳极电流为3.8 mA,电子通过率达到了84.5%的双聚焦极双栅电子枪。此外,通过仿真结果发现,在双聚焦极结构电子枪中,电子枪获得最小焦点尺寸的Vf1 / Vf2会随着Vf2增加而减小,同时,阳极电流会随着Vf1 / Vf2的增加而增加,并且这一增幅会随着Vf2增加而显著扩大,这些发现为进一步优化电子枪的性能提供了重要的指导信息。

     

    Abstract: This article mainly designs a field emission cold cathode electron gun using a hexagonal pyramid embedded cylindrical cathode structure. The anode current and focal size of the electron gun are simulated using Computer Simulation Technology particle studio software, and the structure of the electron gun is continuously optimized. Finally, a dual focusing electrode dual grid electron gun with an effective focal size of about 20 μm, anode current of 3.8 mA, and electron pass rate of 84.5% is designed. In addition, simulation results showed that in the dual-focusing electrode structure electron gun, the Vf1/Vf2 at which the electron gun obtains the minimum focal size decreases with increasing Vf2. At the same time, the anode current increases with increasing Vf1/Vf2, and this increase significantly expands with increasing Vf2. These findings provide important guidance for further optimizing the performance of the electron gun.

     

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