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Design and Field Emission Test of Carbon Nanotube Pasted Cathodes for Traveling-Wave Tube Applications

机译:碳纳米管粘贴阴极在行波管应用中的设计和场发射测试

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This paper presents results of computational and experimental studies of carbon nanotube (CNT) cathodes in gridded focusing guns intended for traveling-wave tube applications. With a curved CNT cathode, a cold beam emission of 11 mA was observed in a diode configuration. Two gridded focusing cathodes pasted with CNTs were then fabricated. When the applied cathode voltage was -0.86 kV, both grid and anode were at ground potential, and the cathode-to-grid distance was 200 mum, the dc emission current from the first gridded CNT cathode was measured to be 4.2 mA. The triode field emission characteristics with two accelerating stages in pulse operation were also examined. With the cathode voltage at -4 kV, a cathode-grid potential difference of 1.38 kV, and a pulsewidth of 20 mus, the measured pulsed current emission was 4.6 mA. The measured current was found to agree with MAGIC2D simulation results. Furthermore, by configuring a double-gridded focusing gun, a significant improvement in the beam focusing data collected through computer modeling was seen
机译:本文介绍了用于行波管应用的网格聚焦枪中碳纳米管(CNT)阴极的计算和实验研究结果。对于弯曲的CNT阴极,在二极管配置中观察到11 mA的冷束发射。然后制作了两个粘贴有CNT的网格状聚焦阴极。当施加的阴极电压为-0.86 kV时,栅极和阳极均处于接地电位,并且阴极到栅极的距离为200 mum,测得来自第一个网格化CNT阴极的dc发射电流为4.2 mA。还检查了在脉冲操作中具有两个加速阶段的三极管场发射特性。阴极电压为-4 kV,阴极-栅极电位差为1.38 kV,脉冲宽度为20 mus,测得的脉冲电流发射为4.6 mA。发现测得的电流与MAGIC2D仿真结果一致。此外,通过配置双网格聚焦枪,可以显着改善通过计算机建模收集的光束聚焦数据

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