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Oscillation Frequency of a Reflex-Triode Virtual Cathode Oscillator

机译:反射三极管虚拟阴极振荡器的振荡频率

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The most fundamental issues in virtual cathode oscillator (vircator)-based high-power microwave devices are efficiency improvement and oscillation frequency control. We present a study of the time-dependent behavior of the oscillation frequency of a reflex-triode vircator for various anode–cathode (AK) gaps. The typical electron-beam parameters were 200 kV, 4 kA, and 300 ns, with a current density of a few hundreds of amperes per square centimeter. Time-dependent frequency analysis is applied to the output signal of the vircator to investigate the time evolution of the emitted frequency spectrum for various AK gaps. We find that the dominant frequency peak is less affected by shot-to-shot fluctuations of diode voltage and current than the other frequency components. In addition, the time of occurrence of the dominant and secondary frequency peaks varies on a shot-to-shot basis. The highest microwave power is emitted when all the power is delivered into a single frequency with minimal mode hopping.
机译:基于虚拟阴极振荡器(vircator)的高功率微波设备中最基本的问题是效率提高和振荡频率控制。我们目前对反射三极管振荡器在各种阳极-阴极(AK)间隙下的振荡频率随时间变化的行为进行研究。典型的电子束参数为200 kV,4 kA和300 ns,电流密度为每平方厘米几百安培。时间相关的频率分析应用于振动器的输出信号,以研究各种AK间隙的发射频谱的时间演变。我们发现,与其他频率分量相比,主导频率峰值受二极管电压和电流的逐次波动影响较小。另外,主要频率峰值和次要频率峰值的出现时间逐次变化。当所有功率以最小的模式跳变传递到单个频率时,会发出最高的微波功率。

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