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首页> 外文期刊>IEEE Transactions on Plasma Science >High-power microwave generation from an axially extracted virtual cathode oscillator
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High-power microwave generation from an axially extracted virtual cathode oscillator

机译:从轴向提取的虚拟阴极振荡器产生大功率微波

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An axially extracted virtual cathode oscillator has been fabricated. This ultra-high-power microwave generator is powered by the "Chundoong" intense relativistic electron beam pulser (Max: 600 kV, 88 kA, and 60 ns duration). In this experiment, a solid electron beam with a peak diode current of 21 kA is obtained from the pulser operated at a peak diode voltage of 300 kV. It is found in this experiment that the peak of microwave emission occurred at the moment of the second peak in electron beam current, where the diode voltage V/sub d/ and diode current I/sub d/ are V/sub d/=290 kV and I/sub d/=21 kA, respectively. This observation might be strongly correlated to the inherent oscillations of the electron cloud in time and space originated from both the dynamics of the reflected electron beam due to virtual cathode and oscillations of the virtual cathode itself, from which the peak of high-power microwave can be generated in this experiment. The major operating output frequencies have been measured to be 6.68 GHz/spl les/f/spl les/7.19 GHz based on the waveguide dispersive delayed line method, which is in good agreement with that from "MAGIC" computational results for an electron beam voltage of 290 kV and a diode current of 21 kA. The maximum microwave output power from the virtual cathode oscillator has been measured to be 200 MW in this experiment. while its power conversion efficiency is approximately 3.3%. The dominant emission mode from the virtual cathode oscillator is shown to be the TM/sub 01/ mode based on the emission pattern of microwave induced air breakdown in this experiment.
机译:已经制造了轴向提取的虚拟阴极振荡器。这种超高功率微波发生器由“ Chundoong”强相对论电子束脉冲发生器提供动力(最大:600 kV,88 kA和60 ns的持续时间)。在该实验中,从工作在峰值二极管电压为300 kV的脉冲发生器获得了峰值二极管电流为21 kA的固体电子束。在该实验中发现,微波发射的峰值出现在电子束电流的第二个峰值的时刻,其中二极管电压V / sub d /和二极管电流I / sub d /为V / sub d / = 290。 kV和I / sub d / = 21 kA。该观察结果可能与电子云在时间和空间上的固有振荡密切相关,该固有振荡既源于由于虚拟阴极引起的反射电子束的动力学,也取决于虚拟阴极本身的振荡,高功率微波的峰值可以从该振荡而来。在此实验中生成。根据波导色散延迟线法测得的主要工作输出频率为6.68 GHz / spl les / f / spl les / 7.19 GHz,这与电子束电压的“ MAGIC”计算结果相符290 kV的电压和21 kA的二极管电流。在此实验中,虚拟阴极振荡器的最大微波输出功率已测量为200 MW。功率转换效率约为3.3%。在本实验中,基于微波引起的空气击穿的发射模式,虚拟阴极振荡器的主要发射模式显示为TM / sub 01 /模式。

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