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High power long pulse microwave generation from a metamaterial structure with reverse symmetry

机译:高功率长脉冲微波从具有反向对称的超材料结构产生

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Experimental operation of a high power microwave source with a metamaterial (MTM) structure is reported at power levels to 2.9 MW at 2.4 GHz in full 1 mu s pulses. The MTM structure is formed by a waveguide that is below cutoff for TM modes. The waveguide is loaded by two axial copper plates machined with complementary split ring resonators, allowing two backward wave modes to propagate in the S-Band. A pulsed electron beam of up to 490 kV, 84A travels down the center of the waveguide, midway between the plates. The electron beam is generated by a Pierce gun and is focused by a lens into a solenoidal magnetic field. The MTM plates are mechanically identical but are placed in the waveguide with reverse symmetry. Theory indicates that both Cherenkov and Cherenkov-cyclotron beam-wave interactions can occur. High power microwave generation was studied by varying the operating parameters over a wide range, including the electron beam voltage, the lens magnetic field, and the solenoidal field. Frequency tuning with a magnetic field and beam voltage was studied to discriminate between operation in the Cherenkov mode and the Cherenkov-cyclotron mode. Both modes were observed, but pulses above 1 MW of output power were only seen in the Cherenkov-cyclotron mode. A pair of steering coils was installed prior to the interaction space to initiate the cyclotron motion of the electron beam and thus encourage the Cherenkov-cyclotron high power mode. This successfully increased the output power from 2.5 MW to 2.9 MW (450 kV, 74 A, 9% efficiency). (C) 2018 Author(s).
机译:高功率微波源具有超材料(MTM)结构的实验操作,在全1亩脉冲中的功率水平上以2.4 GHz的2.9 mW报告。 MTM结构由波导形成,该波导低于TM模式的截止。波导由用互补分开环谐振器加工的两个轴向铜板装载,允许两种向后波模式在S波段中传播。脉冲电子束高达490kV,84A行进在波导的中心,在板之间。电子束由刺枪产生,并且通过透镜聚焦到电磁场中。 MTM板是机械相同的,但用反向对称置于波导中。理论表明,可能发生Cherenkov和Cherenkov-Cyclotron梁相互作用。通过在宽范围内改变操作参数,包括电子束电压,透镜磁场和电磁场来研究高功率微波生成。研究了磁场和光束电压的频率调谐,以区分Cherenkov模式和Cherenkov-Cyclotron模式之间的操作。观察到这两种模式,但在Cherenkov-Cyclotron模式下只看到了高于1 MW的脉冲。在相互作用空间之前安装了一对转向线圈,以引发电子束的回旋速运动,从而促进Cherenkov-Cyclotron高功率模式。这成功将输出功率从2.5 MW增加到2.9 MW(450 kV,74A,9%效率)。 (c)2018年作者。

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