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An X-Band Dual-Frequency Coaxial Relativistic Backward-Wave Oscillator

机译:X波段双频同轴相对论后波振荡器

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An X-band dual-frequency coaxial relativistic backward-wave oscillator (CRBWO) with sectioned slow-wave structures (SWSs) is presented and investigated in this paper. Through theoretical and numerical analysis and particle-in-cell (PIC) simulation, a combination generation of two stationary single-frequency regimes is selected as the operation regime of the two-section CRBWO, and a better understanding of the high-frequency characteristics of the system, including the unstable beam–wave interaction regions of each section and the operation mode of each section, is obtained. The PIC simulation results indicate that, with an electron beam of 500 kV and 8.7 kA guided by an axial magnetic field of 0.82 T, average power of 700 MW with power conversion efficiency up to 16.1% is obtained, and the two dominant frequencies are 10.06 and 10.49 GHz, respectively. Theoretical analysis indicates that the operation modes of the two sections are $hbox{TM}_{01}$ modes.
机译:提出并研究了具有分段慢波结构(SWSs)的X波段双频同轴相对论反向波振荡器(CRBWO)。通过理论和数值分析以及单元内粒子(PIC)模拟,选择了两个平稳单频态的组合生成作为两段式CRBWO的工作态,并更好地了解了CBWO的高频特性。得到的系统包括每个部分的不稳定的波波相互作用区域和每个部分的工作模式。 PIC仿真结果表明,在轴向电场为0.82 T的500 kV电子束和8.7 kA电子束的情况下,平均功率为700 MW,功率转换效率高达16.1%,两个主频为10.06。和10.49 GHz。理论分析表明,这两个部分的操作模式为$ hbox {TM} _ {01} $模式。

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