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Twin traveling-wave tube amplifiers driven by a relativistic backward-wave oscillator

机译:相对论反向波振荡器驱动的双行波管放大器

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Experiments demonstrate stable frequency and relative-phase angle output from twin traveling-wave tube (TWT) amplifiers driven with the redirected signal from a high-power backward-wave oscillator (BWO). The experimental X-band apparatus employs a single generator to produce three independent electron beams which simultaneously drive the BWO and TWT sources. The BWO spontaneously generates up to 14.1 MW peak, 25 to 15-ns long pulses over a current-tunable bandwidth of 9.6%. The BWO power extracted upstream is split and redirected into twin TWT's for amplification. The TWT's produce up to 9.0 MW pulses over an 800 MHz instantaneous bandwidth. Across the amplifier's full-width half-maximum pulse duration of 10 to 20 ns, a relative-phase angle of better than 15/spl deg/ is maintained between TWT's for an 11.0 to 11.7 GHz range. Experiments characterize the gain, relative-phase angle, and efficiency of twin-TWT output as a function of RF-drive frequency and beam current. These experiments are the first to demonstrate the feasibility of relativistic TWT's for phased-array applications, and increase the limited data base documenting relativistic-TWT operation.
机译:实验表明,双行波管(TWT)放大器输出的稳定的频率和相对相位角由高功率反向波振荡器(BWO)的重定向信号驱动。实验性的X波段设备使用单个发生器产生三个独立的电子束,同时驱动BWO和TWT源。 BWO在9.6%的电流可调带宽上自发产生高达14.1 MW的峰值,25至15 ns长的脉冲。上游提取的BWO功率被拆分并重定向到双TWT以进行放大。 TWT在800 MHz的瞬时带宽上产生高达9.0 MW的脉冲。在放大器的全宽半最大脉冲持续时间10至20 ns范围内,在11.0至11.7 GHz的范围内,TWT之间的相对相位角保持在15 / spl deg /以上。实验将双TWT输出的增益,相对相位角和效率表征为RF驱动频率和电子束电流的函数。这些实验是第一个证明相对论TWT在相控阵应用中的可行性,并增加了记录相对论TWT操作的有限数据库。

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