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Numerical Simulation Study and Preliminary Experiments of a Coaxial Vircator With Radial Dual-Cavity Premodulation

机译:径向双腔预调制同轴振动器的数值模拟与初步实验

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Numerical and experimental studies on a coaxial vircator with radial dual-cavity premodulation are presented. The physics of mechanisms on microwave frequency determination and effects on microwave generating efficiency are discussed. It is proved that the microwave frequency is mainly determined by the modulation frequency, while the optimum operating frequency is determined by the intrinsic frequency of the beam itself. When the two frequencies match, the maximum efficiency is yielded. A structure capable of generating 6.0 GW microwave, 17% efficiency, and 50% frequency tuning bandwidth has been obtained by numerical simulations. The preliminary experiments were carried out on the MC55 accelerator. A 2.0 GW output microwave was experimentally obtained and the corresponding device efficiency is about 7%.
机译:提出了带有径向双腔预调制的同轴振动器的数值和实验研究。讨论了微波频率确定机理及其对微波产生效率的影响。事实证明,微波频率主要由调制频率决定,而最佳工作频率由波束本身的固有频率决定。当两个频率匹配时,将产生最大效率。通过数值模拟获得了一种能够产生6.0 GW微波,17%的效率和50%的频率调谐带宽的结构。初步实验是在MC55加速器上进行的。实验获得了2.0 GW的输出微波,相应的设备效率约为7%。

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