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Scaling studies and time-resolved microwave measurements on a relativistic backward-wave oscillator

机译:相对论反向波振荡器的定标研究和时间分辨微波测量

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A relativistic backward-wave oscillator (BWO) operating at a frequency near 8 GHz has been built. The parameters of the 60-ns electron beam driving this microwave source are varied over the ranges 0.8-1.5 MV and 2-10 kA. Several different annular cathodes for launching the electron beam are tried, varying the outer radius and shape. The axial magnetic field guiding the beam through the BWO is varied between 0.6 and 3 T. The power transfer downstream to an output waveguide is investigated as a function of the shape of the transition from the BWO to the waveguide. The scaling of the output power and frequency with these variations is discussed. Time-resolved measurements of 2-ns-long segments of the microwave output are shown. In observations of the microwave signal, it is found that the frequency shifts as the output power envelope passes through a sharp dip. It is proposed that this shift corresponds to a change in the longitudinal operating mode of the BWO.
机译:已经建立了工作在8 GHz附近的相对论后波振荡器(BWO)。驱动此微波源的60 ns电子束的参数在0.8-1.5 MV和2-10 kA的范围内变化。尝试了几种不同的用于发射电子束的环形阴极,它们改变了外径和形状。引导光束通过BWO的轴向磁场在0.6至3 T之间变化。根据从BWO到波导的过渡形状,研究了向输出波导下游的功率传输。讨论了具有这些变化的输出功率和频率的缩放比例。显示了微波输出的2 ns长段的时间分辨测量结果。在对微波信号的观察中,发现频率随着输出功率包络线通过急剧的下降而移动。建议该移动对应于BWO的纵向运行模式的变化。

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