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Study on the maximum stable output of a novel s-band micro-pulse electron gun

机译:新型s波段微脉冲电子枪的最大稳定输出研究

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A novel S-Band Micro-Pulse electron Gun (MPG) which works at the left crossover point energy E c I on the Secondary Electron Yield (SEY) curve was proposed. The working principles of the MPG were presented. The maximum output beam current limited by space charge effects and beam loading effects was investigated by theoretical analysis. The result shows that the maximum beam current is decided by the parameters of the MPG such as resonant frequency, cavity length, shunt impedance and the secondary emission property of the cathode and grid, having nothing to do with the power flowed into the cavity. The low shunt impedance and the low slope of the SEY curve can help increasing the maximum beam current. According to the principles, a MPG with the frequency of 2.856 GHz has been designed and constructed. The steady working state was achieved by using oxygen free copper and molybdenum grid with different transmission coefficient. It was found a good agreement between the analysis and the experiments.
机译:提出了一种新型的S波段微脉冲电子枪(MPG),该电子枪在二次电子产率(SEY)曲线的左交叉点能量E c I下工作。介绍了MPG的工作原理。通过理论分析研究了受空间电荷效应和电子束加载效应限制的最大输出电子束电流。结果表明,最大束流由MPG的参数决定,例如谐振频率,谐振腔长度,分流阻抗以及阴极和栅极的二次发射特性,与流入谐振腔的功率无关。 SEY曲线的低并联阻抗和低斜率可以帮助增加最大电子束电流。根据该原理,已经设计并构造了频率为2.856 GHz的MPG。通过使用具有不同透射系数的无氧铜和钼栅达到了稳定的工作状态。在分析和实验之间发现了很好的一致性。

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