首页> 外文期刊>IEEE Transactions on Plasma Science >Relativistic Klystron amplifiers driven by modulated intense relativistic electron beams
【24h】

Relativistic Klystron amplifiers driven by modulated intense relativistic electron beams

机译:调制强相对论电子束驱动的相对论速调管放大器

获取原文
获取原文并翻译 | 示例
       

摘要

An overview is provided for the novel relativistic klystron amplifiers which are under active study at the Naval Research Laboratory. These amplifiers are driven by an annular intense relativistic electron beam (500-kV, 10-kA range), which is modulated by an external RF source (1.3-GHz, 100-kW range). Experiments, theory, simulation, and simple models are presented to illustrate the unusual properties of such devices which result from the intense space charge of the beam. Chief among them are electrostatic insulation against vacuum breakdown at high power levels, efficient current modulation, short bunching length, and amplitude and phase stability of the output signal. Many of these unexpected features were revealed in two separate experiments: one with a lower current beam (5 kA, 2-cm beam radius), and the other one with a higher current beam (16 kA, 6.6-cm beam radius). Three gigawatts of RF power at 1.3 GHz were generated with the large diameter beam at an efficiency of 35% with 37-dB gain. These experiments are reviewed, along with a combination of particle simulation results and analytic models which facilitate the interpretation. Special attention is paid to the unfamiliar features of these amplifiers, and the critical problems which must be solved before such amplifiers can fulfil their potential in a wide range of applications are addressed.
机译:海军研究实验室正在积极研究新型相对论速调管放大器。这些放大器由环形强相对论电子束(500 kV,10 kA范围)驱动,该电子束由外部RF源(1.3 GHz,100 kW范围)调制。给出了实验,理论,模拟和简单模型来说明这种设备的异常特性,这些特性是由光束的强空间电荷引起的。其中最主要的是在高功率水平下可防止真空击穿的静电绝缘,有效的电流调制,较短的束长度以及输出信号的幅度和相位稳定性。在两个单独的实验中揭示了许多这些意外特征:一个具有较低的电流束(5 kA,2厘米射束半径),另一个具有较高的电流束(16 kA,6.6厘米射束半径)。大直径光束以35%的效率和37dB的增益产生了1.3 GHz的三吉瓦RF功率。回顾了这些实验,并结合了粒子模拟结果和有助于解释的解析模型。要特别注意这些放大器的陌生功能,并且必须解决必须解决的关键问题,这样的放大器才能在广泛的应用中发挥其潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号