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首页> 外文期刊>Physics of plasmas >Phase locking of an S-band wide-gap klystron amplifier with high power injection driven by a relativistic backward wave oscillator
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Phase locking of an S-band wide-gap klystron amplifier with high power injection driven by a relativistic backward wave oscillator

机译:相对论反向波振荡器驱动的高功率注入的S波段宽带隙速调管放大器的锁相

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摘要

Theoretical analyses and preliminary experiments on the phase-locking characteristics of an inductively loaded 2-cavity wide-gap klystron amplifier (WKA) with high power injection driven by a GW-class relativistic backward wave oscillator (RBWO) are presented. Electric power of the amplifier and oscillator is supplied by a single accelerator being capable of producing dual electron beams. The well phase-locking effect of the RBWO-WKA system requires the oscillator have good frequency reproducibility and stability from pulse to pulse. Thus, the main switch of the accelerator is externally triggered to stabilize the diode voltage and then the working frequency. In the experiment, frequency of the WKA is linearly locked by the RBWO. With a diode voltage of 530 kV and an input power of ~22MW, an output power of ~230MW with the power gain of ~10.2 dB is obtained from the WKA. As the main switch is triggered, the relative phase difference between the RBWO and the WKA is less than ±15° in a single shot, and phase jitter of ±11° is obtained within a series of shots with duration of about 40 ns.
机译:提出了由GW级相对论后向波振荡器(RBWO)驱动的具有大功率注入的感应负载2腔宽间隙速调管放大器(WKA)的锁相特性的理论分析和初步实验。放大器和振荡器的电力由能够产生双电子束的单个加速器提供。 RBWO-WKA系统的良好锁相效果要求振荡器具有良好的频率再现性和脉冲之间的稳定性。因此,加速器的主开关从外部触发以稳定二极管电压,然后稳定工作频率。在实验中,WKA的频率被RBWO线性锁定。在530 kV的二极管电压和约22MW的输入功率的情况下,可从WKA获得约230MW的输出功率和约10.2 dB的功率增益。触发主开关后,RBWO和WKA之间的相对相位差在单次触发中小于±15°,并且在一系列持续约40 ns的触发中获得了±11°的相位抖动。

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