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Three-gap klystron output cavity at X-band

机译:X波段三间隙速调管输出腔

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Abstract: A high-power X-band klystron employing a double-gap output cavity has been operating at SLAC. Multi-gap output circuits have lower surface gradients at the interaction gaps than single-gap ones but are prone to self-oscillate due to negative beam loading and trapped higher-order modes. In the double-gap circuit design, considerable attention had been directed to deal with these stability problems. The performance of the present tube appears to be limited by gap breakdown and beam interception particularly at long pulses. A three-gap output cavity is currently under development to further reduce the gap surface gradient. Another new feature of the circuit is an enlarged downstream drift tube to improve on beam clearance. This paper discusses the considerations involved in designing a multi-gap output cavity and presents the cold test measurements on the three-gap circuit. The experimental data is compared with numerical results from the 3-D simulation code ARGUS.!9
机译:摘要:采用双间隙输出腔的高功率X波段速调管已在SLAC上运行。多间隙输出电路在相互作用间隙处的表面梯度要比单间隙输出电路低,但由于负的电子束负载和被捕获的高阶模态,容易产生自激振荡。在双间隙电路设计中,已经将相当多的注意力集中在处理这些稳定性问题上。本发明的管的性能似乎受到间隙击穿和光束拦截的限制,特别是在长脉冲下。目前正在开发三间隙输出腔,以进一步减小间隙表面梯度。该电路的另一个新功能是扩大了下游的漂移管,以改善光束间隙。本文讨论了设计多间隙输出腔所涉及的注意事项,并介绍了三间隙电路的冷测试测量结果。将实验数据与3-D仿真代码ARGUS的数值结果进行比较!9

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