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A megawatt-level surface wave oscillator in Y-band with large oversized structure driven by annular relativistic electron beam

机译:Y波段的兆瓦级表面波振荡器,具有由环形相对论电子束驱动的大型超大结构

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High power vacuum electronic devices of millimeter wave to terahertz regime are attracting extensive interests due to their potential applications in science and technologies. In this paper, the design and experimental results of a powerful compact oversized surface wave oscillator (SWO) in Y-band are presented. The cylindrical slow wave structure (SWS) with rectangular corrugations and large diameter about 6.8 times the radiation wavelength is proposed to support the surface wave interacting with annular relativistic electron beam. By choosing appropriate beam parameters, the beam-wave interaction takes place near the π-point of TM01 mode dispersion curve, giving high coupling impedance and temporal growth rate compared with higher TM0n modes. The fundamental mode operation of the device is verified by the particle-in-cell (PIC) simulation results, which also indicate its capability of tens of megawatts power output in the Y-band. Finally, a compact experimental setup is completed to validate our design. Measurement results show that a terahertz pulse with frequency in the range of 0.319–0.349?THz, duration of about 2?ns and radiation power of about 2.1?MW has been generated.
机译:由于其在科学和技术中的潜在应用,毫米波的大功率真空电子设备对太赫兹制度的影响是吸引广泛的利益。本文介绍了Y波段强大的紧凑型超大表面波振荡器(SWO)的设计和实验结果。提出了具有矩形波纹的圆柱形慢波结构(SWS)和大直径约6.8倍辐射波长,以支撑与环形相对论电子束相互作用的表面波。通过选择合适的光束参数,波波相互作用在TM01模式色散曲线的π点附近进行,与较高的TM0N模式相比,提供高耦合阻抗和时间生长速率。通过粒子内(PIC)仿真结果验证了设备的基本模式操作,这也表明其在Y波段中的数十兆瓦功率输出的能力。最后,完成了紧凑的实验设置以验证我们的设计。测量结果表明,太赫兹脉冲频率在0.319-0.349〜thz的范围内,持续时间为约2Ω·ns和约2.1μm的辐射功率。

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