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Efficient generation of multi-gigawatt power by a klystron-like relativistic backward wave oscillator

机译:类速调相对论后向波振荡器可有效产生数千兆瓦的功率

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Efficient generation regime with a high power output has been experimentally realized in a klystron-like relativistic backward wave oscillator, in which a modulation cavity is inserted between the slow wave structure to decrease the energy spread of modulated beam electrons, and an extraction cavity is employed at the end of the slow wave structure to further recover energy from the electron beam. At a guiding magnetic field of 2.2 T, a microwave pulse with power of 6.5 GW, frequency of 4.26 GHz, pulse duration of 38 ns, and efficiency of 36% was generated when the diode voltage was 1.1 MV, and diode current was 16.4 kA. When the diode voltage was 820 kV, efficiency up to 47% with microwave power 4.4 GW was also realized experimentally.
机译:在类似速调管的相对论后向波振荡器中,通过实验实现了具有高功率输出的高效发电方式,其中在慢波结构之间插入调制腔以减小调制束电子的能量扩散,并采用提取腔在慢波结构的末端,以进一步从电子束中回收能量。在2.2 T的引导磁场下,当二极管电压为1.1 MV,二极管电流为16.4 kA时,产生了功率为6.5 GW,频率为4.26 GHz,脉冲持续时间为38 ns,效率为36%的微波脉冲。 。当二极管电压为820 kV时,微波功率4.4 GW的效率也达到了47%。

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