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首页> 外文期刊>Physics of plasmas >Investigation of the operating characteristics of a 12 stepped-cavity relativistic magnetron with axial extraction driven by an 'F' transparent cathode using particle-in-cell simulations
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Investigation of the operating characteristics of a 12 stepped-cavity relativistic magnetron with axial extraction driven by an 'F' transparent cathode using particle-in-cell simulations

机译:使用单元内模拟研究“ F”透明阴极驱动的带有轴向抽出的12阶阶梯相对论磁控管的工作特性

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摘要

We explore the performance of a 12 stepped-cavity relativistic magnetron with axial extraction (12 stepped-cavity RMDO) driven by an "F" transparent cathode (the "F" transparent cathode is a coaxial transparent cathode with two azimuthal periods of increased thickness and which looks like the letter "F," so we call it "F" transparent cathode) through particle-in-cell (PIC) simulations. It is shown that using the "F" transparent cathode, an electronic efficiency of 70% with gigawatt output power is obtained while reducing the axial leakage current by about 50% compared to using the usual transparent cathode. Further PIC simulations demonstrate that frequency bifurcation occurs and mode switching can be achieved using several hundred kilowatts input RF power in the 12 stepped-cavity RMDO driven by an "F" transparent cathode. For example, it was found that using an applied driver power of 180kW for 10 ns, the operating TE31 mode can be switched to the TE41 mode. It is also found that the secondary electron and backscattered electron emission and axial leakage current were two disturbing factors for the 12 stepped-cavity RMDO when it works at a stable operation mode but when the 12 stepped-cavity RMDO works near the critical magnetic field at the boundary between two modes, these two factors would lead to the operation modes changing. Published by AIP Publishing.
机译:我们探索了由“ F”透明阴极(“ F”透明阴极是同轴透明阴极,具有两个厚度增加的方位角周期)驱动的带有轴向抽出的12阶台阶相对论磁控管(12阶台阶RMDO)的性能。看起来像字母“ F”,因此我们通过粒子内(PIC)模拟将其称为“ F”透明阴极。结果表明,与使用普通的透明阴极相比,使用“ F”透明阴极可获得具有千兆瓦输出功率的70%的电子效率,同时将轴向泄漏电流降低了约50%。进一步的PIC仿真表明,在由“ F”透明阴极驱动的12个阶梯腔RMDO中,使用数百千瓦的输入RF功率会发生频率分叉,并且可以实现模式切换。例如,发现使用180kW的驱动器功率持续10 ns,可以将运行的TE31模式切换到TE41模式。还发现二次电子和背向散射电子的发射以及轴向泄漏电流是12个阶梯腔RMDO在稳定工作模式下工作时的12个干扰因素,而12个阶梯腔RMDO在临界磁场下工作时,则是两个干扰因素。两种模式之间的边界,这两个因素将导致操作模式发生变化。由AIP Publishing发布。

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