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3-D PIC Numerical Investigations of a Novel Concept of Multistage Axial Vircator for Enhanced Microwave Generation

机译:用于增强微波产生的新型多级轴向振动器概念的3-D PIC数值研究

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The enhancement of power conversion efficiency of a classical axial VIRtual CAthode oscillaTOR (vircator) by introducing one or more reflectors beyond the anode in the cylindrical waveguide is numerically investigated. The targeted microwave (MW) output frequency lies in the S-band at around 3 GHz for an operation in TM mode. Powered by a 511-kV voltage signal for a duration of 45 ns, the design under consideration operates with an injected electron beam of mean voltage and mean current of around 508 kV and 19 kA, respectively. Full-wave 3-D modeling is performed using well-tested electromagnetic particle-in-cell codes such as Computer Simulation Technology Particle Studio and Magic. Simple rules for designing and installing the reflectors are given. The number of reflectors required to maximize the efficiency is discussed. The power conversion efficiency is shown to be improved over a classical axial vircator design by a factor of 12.8. A maximum mean output power of about 1.26 GW is delivered off-axis in the S-band at around 3 GHz, with an efficiency of nearly 13%. Besides, it is also shown that increasing the number of reflectors allows switching the operation mode from TM to TE along with a shift of MWfrequency from the S- to the L-band. A five- or six-reflector configuration is predicted to generate MW at both 2.86 and 1.4 GHz with conversion efficiencies ranging from 3.5% to 6.6%. A vircator including seven reflectors is expected to operate in TE mode at 1.4 GHz with an efficiency of about 8%.
机译:数值研究了通过在圆柱波导中的阳极之外引入一个或多个反射器来提高经典轴向虚拟阴极振荡器(振动器)的功率转换效率。在TM模式下运行时,目标微波(MW)输出频率位于3 GHz左右的S波段。所考虑的设计由511kV电压信号供电,持续45 ns的时间,所注入的电子束的平均电压和平均电流分别约为508 kV和19 kA。全波3-D建模是使用经过良好测试的电磁单元粒子代码(例如Computer Simulation Technology Particle Studio和Magic)进行的。给出了设计和安装反射器的简单规则。讨论了使效率最大化所需的反射器数量。与经典的轴向振动器设计相比,功率转换效率提高了12.8倍。大约1.26 GW的最大平均输出功率在3 GHz左右的S波段离轴传输,效率接近13%。此外,还显示出增加反射器的数量允许将操作模式从TM切换到TE,同时将MW频率从S波段切换到L波段。五或六反射器配置预计将在2.86和1.4 GHz时产生MW,转换效率范围为3.5%至6.6%。包含七个反射器的振动器有望在1.4 GHz的TE模式下工作,效率约为8%。

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