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

机译:没有外部引导磁场的同轴Ku波段渡越辐射振荡器

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A coaxial transit radiation oscillator without an external guiding magnetic field is designed to generate high power microwave at Ku-band. By using a coaxial structure, the space-charge limiting current can be increased significantly. In order to reduce the system's volume, weight and the consumption of the energy, a Pierce-like cathode is proposed to realize the transmission of the intense relativistic annular electron beam without the guiding magnetic field. By contrast with conventional relativistic microwave generators, such a kind of device has the advantages of high stability, non-guiding magnetic field, low impedance and high efficiency. Moreover, with such a design it is possible to improve power capacity by increasing the radial dimension of the Ku-band device. With a 550 kV, 7.5 kA beam, a 1.25 GW microwave pulse at 12.08 GHz has been obtained in the simulation. The power conversion efficiency is about 30%.
机译:没有外部引导磁场的同轴传输辐射振荡器被设计为在Ku波段产生高功率微波。通过使用同轴结构,可以显着增加空间电荷限制电流。为了减小系统的体积,重量和能量消耗,提出了一种类似皮尔斯的阴极来实现强相对论环形电子束的透射而无需引导磁场。与传统的相对论微波发生器相比,这种装置具有高稳定性,非导磁场,低阻抗和高效率的优点。而且,通过这种设计,可以通过增加Ku带器件的径向尺寸来提高功率容量。使用550 kV,7.5 kA的光束,在仿真中获得了12.08 GHz的1.25 GW微波脉冲。功率转换效率约为30%。

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