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Design of a metamaterial slow wave structure for an O-type high power microwave generator

机译:O型大功率微波发生器的超材料慢波结构设计

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We describe a new O-type high power microwave oscillator that uses a metamaterial slow wave structure (MSWS) supporting waves with negative dispersion. The MSWS comprises periodically alternating, oppositely oriented split ring resonators (SRRs) connected to a metal tube where the distance between the rings is much less than a wavelength of the radiation generated. The SRRs provide negative permeability mu. The diameter of the metal tube is such that the generated oscillations are below cutoff for a regular waveguide with the same dimension, thus providing negative permittivity epsilon. A tubular electron beam propagates coaxially through this structure. The interaction space is coupled with the outer coaxial channel through gaps between the SRRs. Radiation is extracted in an endfire manner at the end of the outer channel via a conical horn section. Using particle- in-cell (PIC) simulations, it was found that the electron beam in the interaction space forms a sequence of trapped electron bunches by the synchronous operating wave. The output parameters of this oscillator for an applied voltage U = 400 kV, electron beam current I = 4.5 kA, and guide axial magnetic field B = 2 T are radiation power P = 260MW, radiation frequency f = 1.4 GHz, and electronic efficiency eta = 15% when the total SWS length L consisting of 12 split rings is 34.5 cm. The output radiation pattern corresponds to a TE21-like hybrid mode. This article presents details on the simulations of this novel structure and computational and experimental cold tests of a prototype structure in preparation for experimental hot tests. Published by AIP Publishing.
机译:我们描述了一种新型的O型高功率微波振荡器,该振荡器使用超材料慢波结构(MSWS)支持负色散波。 MSWS包括周期性交替的,相反方向的裂环谐振器(SRR),其连接到金属管,其中环之间的距离远小于所产生的辐射的波长。 SRR提供负磁导率μ。金属管的直径使得对于具有相同尺寸的规则波导,所产生的振荡低于截止值,从而提供负介电常数ε。管状电子束通过该结构同轴传播。交互空间通过SRR之间的间隙与外部同轴通道耦合。辐射通过锥形喇叭部分在外通道末端以端射方式提取。使用粒子内(PIC)模拟,发现相互作用空间中的电子束通过同步工作波形成了一系列俘获的电子束。对于施加的电压U = 400 kV,电子束电流I = 4.5 kA和引导轴向磁场B = 2 T的情况,该振荡器的输出参数为辐射功率P = 260MW,辐射频率f = 1.4 GHz和电子效率eta当由12个开口环组成的SWS总长度L为34.5 cm时,= 15%。输出辐射图对应于类似TE21的混合模式。本文详细介绍了这种新型结构的仿真以及原型结构的计算和实验冷测试,以准备进行实验热测试。由AIP Publishing发布。

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