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Design and efficient operation of a coaxial RBWO

机译:同轴RBWO的设计和高效运行

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Coaxial relativistic backward wave oscillator with the rippled inner conductor not only increases the output efficiency but also results in the serious phenomenon of pulse shortening in experiments. Our research indicates that the two main mechanisms leading to the pulse shortening are the electron beam interruption and combining effects of the explosive field electron emission and the secondary electron multipactor on the surface of the slow-wave structure. In order to enhance its power capacity the electrodynamic structure is modified by detailed analysis of the field distribution in the coaxial slow-wave structure. The appropriate resonant reflector and the electron collector are developed for the application of the coaxial relativistic backward wave oscillator. A series of surface treatment is applied to enhance the power capacity of the coaxial RBWO. In the experiment, the microwave pulse duration is increased from less than 10? ns to 20? ns, and the output efficiency is enhanced from less than 20% to 34% employing the electron beam pulse of the full width at half maximum 28? ns. The peak power of 1.01 GW at the frequency of 7.4? GHz is achieved. It is found that the output efficiency of the coaxial RBWO is likely to be advanced if its power capacity can be boosted further.
机译:带有内导体波纹的同轴相对论反向波振荡器不仅提高了输出效率,而且在实验中导致严重的脉冲缩短现象。我们的研究表明,导致脉冲缩短的两个主要机理是电子束的中断以及爆炸场电子发射和次级电子多倍体在慢波结构表面上的综合作用。为了增强其功率容量,通过对同轴慢波结构中的场分布进行详细分析来修改电动结构。为同轴相对论后向波振荡器的应用开发了合适​​的谐振反射器和电子收集器。进行了一系列表面处理以增强同轴RBWO的功率容量。在实验中,微波脉冲持续时间从小于10? ns到20? ns,并且使用半峰全宽的电子束脉冲将输出效率从不到20%提高到34%(最大为28?)。 ns。频率为7.4?时的峰值功率为1.01 GW。达到GHz。已经发现,如果可以进一步提高同轴RBWO的功率容量,其输出效率可能会提高。

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