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A novel coaxial Ku-band transit radiation oscillator without external guiding magnetic field

机译:新型无外部引导磁场的同轴Ku波段渡越辐射振荡器

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摘要

A novel coaxial transit radiation oscillator without external guiding magnetic field is designed to generate high power microwave at Ku-band. By using a coaxial structure, the space-charge potential energy is suppressed significantly, that is good for enhancing efficient beam-wave interaction. In order to improve the transmission stability of the unmagnetized intense relativistic electron beam, a Pierce-like cathode is employed in the novel device. By contrast with conventional relativistic microwave generators, this kind of device has the advantages of high stability, non-guiding magnetic field, and high efficiency. Moreover, with the coaxial design, it is possible to improve the power-handing capacity by increasing the radial dimension of the Ku-band device. With a 550 keV and 7.5 kA electron beam, a 1.25GW microwave pulse at 12.08GHz has been obtained in the simulation. The power conversion efficiency is about 30%.
机译:设计了一种新型的无外部引导磁场的同轴传输辐射振荡器,用于在Ku波段产生高功率微波。通过使用同轴结构,空间电荷势能被显着抑制,这对于增强有效的束波相互作用是有利的。为了提高未磁化的强相对论电子束的传输稳定性,在该新型装置中采用了皮尔斯状的阴极。与传统的相对论微波发生器相比,这种装置具有稳定性高,磁场不导通,效率高的优点。而且,利用同轴设计,可以通过增加Ku带装置的径向尺寸来提高功率处理能力。在550 keV和7.5 kA电子束的情况下,在仿真中获得了在12.08GHz的1.25GW微波脉冲。功率转换效率约为30%。

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