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Effect of Metallic Dust on Operation of Repetition-Rate High-Power Microwave Devices

机译:金属粉尘对重复频率大功率微波设备运行的影响

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In the circuits of high-power microwave (HPM) devices, such as HPM sources and/or high-gradient accelerating structures, small quantities of metallic dust may exist. These metallic particles of a micrometer size being located in the region of high RF magnetic field can absorb enough energy for significant heating and even melting. The melted clumps can then impinge on structure surface and create nonuniformities, leading to the RF field enhancement and subsequent breakdown events. This heating process in single long-enough RF pulses was analyzed in our previous paper (“Possible role of RF melted microparticles on the operation of high-gradient accelerating structures,” Phys. Rev. ST—Accel. and Beams, 12, 101001, 2009). In this paper, we consider similar processes in HPM devices operating in repetition-rate regimes. The process of particles cooling between RF pulses is first analyzed under an assumption of blackbody radiation. Then, the applicability of this assumption is discussed, and the effect of deviation from it is estimated. It is shown that the melting of metallic particle of a size comparable to the skin depth in HPM devices is possible when the RF magnetic field, microwave pulse duration, and repetition frequency are large enough.
机译:在HPM源和/或高梯度加速结构等高功率微波(HPM)设备的电路中,可能会存在少量金属粉尘。位于高RF磁场区域中的这些微米级的金属颗粒可以吸收足够的能量,从而显着加热甚至熔化。然后,熔化的团块会撞击到结构表面并产生不均匀性,从而导致RF场增强和随后的击穿事件。我们以前的论文(“ RF熔化的微粒在高梯度加速结构运行中的可能作用”,Phys。Rev. ST-Accel。and Beams,12,101001, 2009)。在本文中,我们考虑了以重复速率机制运行的HPM设备中的类似过程。首先在黑体辐射的假设下分析RF脉冲之间的粒子冷却过程。然后,讨论了该假设的适用性,并估计了偏离的影响。结果表明,当RF磁场,微波脉冲持续时间和重复频率足够大时,熔融金属的大小可以与HPM器件的趋肤深度相媲美。

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