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Electrode-plasma-driven radiation cutoff in long-pulse, high-power microwave devices

机译:长脉冲大功率微波设备中的电极等离子体驱动辐射截止

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摘要

The impact of electrode plasma dynamics on the radiation production in a high power microwave device is examined using particle-in-cell simulations. Using the design of a compact 2.4 GHz magnetically insulated line oscillator (MILO) as the basis for numerical simulations, we characterize the time-dependent device power and radiation output over a range of cathode plasma formation rates. These numerical simulations can self-consistently produce radiation characteristics that are similar to measured signals in long pulse duration MILOs. This modeling capability should result in improved assessment of existing high-power microwave devices and lead to new designs for increased radiation pulse durations.
机译:使用粒子内模拟研究了电极等离子体动力学对高功率微波设备中辐射产生的影响。使用紧凑的2.4 GHz磁绝缘线振荡器(MILO)的设计作为数值模拟的基础,我们表征了在一定范围的阴极等离子体形成速率下随时间变化的器件功率和辐射输出。这些数值模拟可以自洽地产生与长时间脉冲持续时间MILO中的测量信号相似的辐射特性。这种建模能力应该可以改善对现有大功率微波设备的评估,并可以为增加辐射脉冲持续时间做出新的设计。

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