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首页> 外文期刊>IEEE Transactions on Electron Devices >Design and Simulation of Dual-Band Nonuniform Relativistic Backward Wave Oscillator Using a Bragg Structure as Its RF Circuit and Reflector-Cum-Mode Converter
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Design and Simulation of Dual-Band Nonuniform Relativistic Backward Wave Oscillator Using a Bragg Structure as Its RF Circuit and Reflector-Cum-Mode Converter

机译:双带非均匀相对论反向波振荡器的设计与仿真使用BRAGG结构作为其RF电路和反射器 - CUM模式转换器

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摘要

A relativistic backward wave oscillator (RBWO) operating in dual band is designed and studied using finite-difference time domain (FDTD) particle-in-cell (PIC) simulations implemented in MAGIC. It consists of a sinusoidally corrugated, moderately overmoded nonuniform slow wave structure (SWS) in the downstream section and a single fold two-way helically corrugated Bragg structure in the upstream section. A single intense relativistic electron beam (IREB) having similar to 5.1 kA of current is predicted for 600 kV of diode voltage. An RF output power similar to 720 MW in X-band and similar to 510 MW in C-band are predicted in TE11 mode with a guiding magnetic field of similar to 2.5 T.
机译:设计和研究在双频带中操作的相对论反向波振荡器(RBWO)使用魔法实施的有限差分时域(FDTD)粒子(PIC)模拟设计和研究。它包括在下游部分中的正弦波纹,中间过度的非均匀性慢波结构(SWS)和在上游部分中的单折双向螺旋瓦楞布拉格结构。预测具有类似于5.1ka的电流的单个强烈相对论的电子束(IREB),用于600kV的二极管电压。在TE11模式下预测了与X波段中的X波段和510mW类似于720mW的RF输出功率,导向磁场类似于2.5 T.

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