首页> 外文期刊>Journal of the Korean Physical Society >Three-dimensional Particle-in-cell Simulations of a Millimeter-wave Reflex Klystron Activated by Secondary Electrons
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Three-dimensional Particle-in-cell Simulations of a Millimeter-wave Reflex Klystron Activated by Secondary Electrons

机译:二次电子激活的毫米波反射速调管的三维粒子模拟

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摘要

We report a reflex klystron in which an embedded planar cold cathode is used to generate a secondary electron beam. By using secondary electron cathode with a high secondary electron yield, the number of secondary electrons can be sufficiently increased and adjusted to activate the reflex klystron. In our three-dimensional particle-in-cell simulations, oscillation of the device was demonstrated at 100 GHz when using a secondary electron cathode with a maximum yield of 20 while a. primary electron beam with a current density less than 5 A/cm(2) was irradiated to create secondary electrons. The current density of the primary electron beam is achievable with typical field emission cathodes if they are equipped with an electron beam focusing lens, and a maximum yield of 20 can be obtained if magnesium oxide is used for the secondary electron emission.
机译:我们报告了一个反射速调管,其中使用嵌入式平面冷阴极来生成二次电子束。通过使用具有高二次电子产率的二次电子阴极,可以充分增加和调节二次电子的数量以激活反射速调管。在我们的三维单元粒子仿真中,当使用二次电子阴极时,在100 GHz时器件的振荡得到了证明,而二次电子阴极的最大产率为20。辐照电流密度小于5 A / cm(2)的一次电子束以产生二次电子。如果典型的场发射阴极配备有电子束聚焦透镜,则初级电子束的电流密度是可以实现的,并且如果将氧化镁用于次级电子发射,则可以获得最大20的产率。

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