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Three-Dimensional Simulations of Magnetic Priming of a Relativistic Magnetron

机译:相对论磁控管的磁性启动的三维模拟

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Using a hybrid approach, 3-D simulations of magnetic priming of a relativistic magnetron have been performed. The primed magnetic field values were calculated using a magnetostatics code (Magnum) and then imported into a particle-in-cell code (Magic PIC) and run for the case of a six-vane relativistic magnetron. The magnetically perturbative structures chosen for implementation in these simulations were sets of three high-permeability wires of various lengths, which would be placed within the cathode, the anode, or, in the combined case, both the cathode and anode. In the best-performing cathode-wire case (three 4-cm wires), magnetic priming was found to reduce the start-oscillation time of the magnetron to 50% that of the unprimed case. When wires were embedded in both the cathode and the anode, the best-performing case (4-cm cathode wires and 4-cm anode wires) was found to start oscillating at 30% of the start-oscillation time of the unprimed case. The cases of magnetically primed magnetrons were found to exhibit slightly reduced equilibrium power levels, compared with the unprimed case.
机译:使用混合方法,已经执行了相对论磁控管的磁启动的3D模拟。使用静磁代码(Magnum)计算准备好的磁场值,然后将其输入到单元粒子代码(Magic PIC)中,并在六叶片相对论磁控管的情况下运行。在这些模拟中选择用于实施的磁扰动结构是三根不同长度的高磁导率丝组,它们将放置在阴极,阳极内,或者在组合的情况下放置在阴极和阳极内。在性能最好的阴极线情况下(3根4厘米长的电线),发现磁启动可以将磁控管的启动振荡时间减少到非启动情况下的50%。当导线同时嵌入正极和负极时,发现性能最佳的情况(4厘米正极线和4厘米负极线)在未上底漆的情况下,在开始振荡时间的30%时开始振荡。与未启动的情况相比,发现经磁启动的磁控管的情况显示出平衡功率水平略有降低。

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