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Investigation of 0.38 THz backward-wave oscillator based on slotted sine waveguide and pencil electron beam

机译:基于缝隙正弦波和笔形电子束的0.38 THz反向波振荡器的研究

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摘要

A novel backward wave oscillator (BWO) is presented by utilizing a slotted sine waveguide with a pencil electron beam to produce the high power terahertz wave. The high frequency characteristics including dispersion properties, interaction impedances, and transmission characteristics of the slotted sine waveguide are analyzed in detail. The high frequency system including the output coupler, slow wave structure (SWS), and reflector are designed properly. A 3-D particle-in-cell mode is applied to predict the device performance of the BWO based on the novel SWS. The investigation results demonstrate that this device can generate over 8.05 W output power in the frequency range of 363.4-383.8 GHz by using a 30 mA pencil electron beam and adjusting the beam voltage from 20 kV to 32 kV. (C) 2016 AIP Publishing LLC.
机译:提出了一种新颖的后向波振荡器(BWO),它利用带有铅笔状电子束的开槽正弦波导来产生高功率太赫兹波。详细分析了开槽正弦波导的高频特性,包括色散特性,相互作用阻抗和传输特性。包括输出耦合器,慢波结构(SWS)和反射器在内的高频系统均经过适当设计。基于新颖的SWS,将3-D单元格粒子模式应用于预测BWO的设备性能。研究结果表明,通过使用30 mA铅笔状电子束并将束电压从20 kV调节至32 kV,该设备可在363.4-383.8 GHz频率范围内产生超过8.05 W的输出功率。 (C)2016 AIP出版有限责任公司。

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