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Improved Design of a Multistage Axial Vircator With Reflectors for Enhanced Performances

机译:具有反射器的多级轴向振动器的改进设计,可增强性能

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The basic design of an axial virtual cathode oscillator (vircator) with axial extraction operating in TM mode is modified by introducing thin conducting disks, also called reflectors, into the cylindrical waveguide. The operation principal of this novel type of device relies on the formation of a series of virtual cathodes, located at the center of adjacent quasi-cavities. The behavior of this new type of multistage vircator is numerically investigated using CST Particle Studio 3-D particle-in-cell code. Progressively decreasing the radii of the reflectors installed upstream in the tube allows the mitigation of spurious modes. Tapering the radii of the reflectors turns out to be crucial in focusing the electron beam on axis in the downstream region and maximizing the TM power conversion efficiency. This novel architecture enables a five-reflector vircator operating with an injected electron beam of 508-kV mean voltage and 19-kA mean current to deliver up to 2-GW mean power sustained only by the TM mode in the S-band with a power conversion efficiency close to 21%.
机译:通过将薄的导电盘(也称为反射器)引入圆柱波导中,可以修改具有在TM模式下运行的轴向抽出的轴向虚拟阴极振荡器(振动器)的基本设计。这种新颖类型的装置的操作原理依赖于一系列虚拟阴极的形成,该虚拟阴极位于相邻的准腔的中心。使用CST Particle Studio 3-D单元格内粒子代码对这种新型多级振荡器的行为进行了数值研究。逐渐减小安装在灯管上游的反射器的半径可以减轻杂散模式。逐渐减小反射器的半径对于将电子束聚焦在下游区域的轴上并最大程度地提高TM功率转换效率至关重要。这种新颖的体系结构使五反射镜振荡器能够以508kV平均电压和19kA平均电流的注入电子束工作,以仅通过S波段的TM模式提供的功率提供高达2GW的平均功率。转换效率接近21%。

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