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Detailed measurements showing the influence of the forward propagating wave and end reflections on the performance of relativistic backward wave oscillators

机译:详细的测量显示了正向传播波和端反射对相对论反向波振荡器性能的影响

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The primary energy exchange in a relativistic backward wave oscillator (BWO) occurs between the electron beam and the backward travelling wave within the slow wave structure (SWS). In most high power BWOs the backward travelling wave is reflected by a cutoff neck at the entrance of the SWS and radiation is extracted in the direction of the electron beam. Recently, researchers have investigated the effect of the forward travelling wave on the energy exchange between the electron bunches and the backward wave and the effect of multiple end reflections and cavity effects on the efficiency of microwave generation. This poster paper presents detailed measurements of the interaction of the electron beam with the forward travelling wave, and the effect of end reflections on the radiation frequency and efficiency. Numerical simulation results are found to be in agreement with the experimental measurements. A Sinus 6 relativistic electron beam accelerator is used for a detailed mapping of BWO performance as a function of input parameters. For uniform amplitude SWSs of various lengths the BWO output power, rf frequency and conversion efficiency were measured as a function of beam current and cathode voltage In addition, BWO performance was characterized as a function of phase of reflections at both ends of the SWS.
机译:相对论后向波振荡器(BWO)中的一次能量交换发生在电子束和慢波结构(SWS)中的后向行波之间。在大多数高功率BWO中,后向传播波被SWS入口处的截止颈反射,并且沿电子束方向提取辐射。最近,研究人员研究了前向行波对电子束与后向波之间的能量交换的影响,以及多端反射和腔效应对微波产生效率的影响。该海报纸详细描述了电子束与正向行波的相互作用以及端反射对辐射频率和效率的影响。数值模拟结果与实验测量结果一致。 Sinus 6相对论电子束加速器用于BWO性能作为输入参数的函数的详细映射。对于各种长度的均一振幅SWS,测量BWO输出功率,RF频率和转换效率作为电子束电流和阴极电压的函数。此外,将BWO性能表征为SWS两端反射相位的函数。

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