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Simulation Investigations of High Power Overmoded Relativistic Backward Wave Oscillator with Trapezoidal Resonant Reflector

机译:具有梯形谐振反射器的高功率超导相对主义反向波振荡器的仿真研究

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An S-band high power relativistic backward wave oscillator using a trapezoidal resonant reflector and overmoded slow-wave structure is demonstrated by finite difference time domain based Particle-In-Cell code. The trapezoidal resonant reflector and slow-wave structure are chosen to improve the RBWO power handing capability to gigawatt (GW). The Trapezoidal resonant reflector enhances the pre-modulation during electron beam propagation, thus increasing the generated RF signal overall efficiency and coherency. The particle-in-cell simulation generated an RF output power ~5.4 GW in TM01 mode at ~3.6 GHz in a 2.0 T magnetic field and developed a 13.5 kA current for a 1.2 MV DC cathode voltage. The power conversion efficiency is achieved as ~33 %. Further, the influence of different design parameters on frequency, RF output power, and efficiency are analysed through Particle-In-Cell simulations.
机译:通过有限差分时间域基础的粒子码证明了使用梯形谐振反射器和超掺模慢波结构的S场高功率相对论反向波振荡器。 选择梯形谐振反射器和慢波结构,以改善对Gigawatt(GW)的RBWO动力递送能力。 梯形谐振反射器在电子束传播期间增强了预调度,从而提高了所产生的RF信号总效率和一致性。 粒子电池仿真在2.0 T磁场中的TM01模式下产生了RF输出功率〜5.4 GW,为1.2 MV DC阴极电压开发了13.5 ka电流。 功率转换效率达到约33%。 此外,通过粒子内模拟分析了不同设计参数对频率,RF输出功率和效率的影响。

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