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High power microwave generation at high repetition rates

机译:高重复频率的高功率微波产生

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Generation of microwaves at high power has progressed largely with single shot devices. Yet applications require repetitive operation at substantial repetition rates, implying high average power. This requires operation in a new domain for microwave devices. The technical challenge is to achieve very high electric fields in the source on a repetitive basis. We describe experiments on CLIA, a Compact Linear Induction Accelerator, generating 750 kV, 10 kA using magnetic switching to produce 60 ns pulses. We describe experiments with relativistic magnetrons and klystrons in the 1 GW, 100 Hz domain. As a first application we used CLIA to drive a water-cooled L-band magnetron at repetition rates as high as 250 Hz with no breakdown or pulse shortening. This gave 6.3 kW average power. A short burst at 1 kHz operated at ≈25 kW. In this regime operation is not limited by gas build-up, electrode erosion or microwhisker depletion. We are now operating on CLIA with relativistic klystrons of both the high current and low current varieties. Beams with modulated current powers of ≈ 1 GW have been generated at 200 Hz for bursts as long as 1000 pulses.
机译:高功率的微波产生很大程度上具有单次射击设备。然而,应用需要以实质重复率的重复操作,暗示高平均功率。这需要在新域中进行操作进行微波设备。技术挑战是在重复的基础上在源中实现非常高的电场。我们描述了CLIA的实验,一种紧凑的线性感应加速器,使用磁性开关产生750 kV,10ka,以产生60 ns脉冲。我们描述了在1 GW,100 Hz结构域中的相对论磁控管和klystrons的实验。作为第一个应用程序,我们使用CLIA在重复速率下驱动水冷L波段磁控管,高达250 Hz,没有故障或脉冲缩短。这给了6.3千瓦的平均功率。在1 kHz的短暂爆发,在≈25kw运行。在该制度操作中,不受气体积聚,电极腐蚀或微旋转耗尽的限制。我们现在在CLIA上运行,具有高电流和低电流的相对论Klystrons。具有≈1GW的调制电流功率的光束已经在200 Hz中产生,以便突发,只要1000个脉冲。

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