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Study on Wideband Sheet Beam Traveling Wave Tube Based on Staggered Double Vane Slow Wave Structure

机译:基于交错双叶片慢波结构的宽带薄板行波管研究

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In this paper, a wideband 220-GHz sheet-beam traveling-wave tube (TWT) based on staggered double vane slow-wave structure (SWS) is investigated. A novel method of loading the attenuator into the SWS for suppressing backward wave oscillation is proposed. In addition, a novel focusing electrode of the sheet beam gun is carried out in this paper, which is a whole structure but divided into two parts artificially, one is used to compress the electron beam in -direction and the other is used to compress the electron beam in -direction. In addition, a novel anode is redesigned to reduce the defocusing effect caused by the equipotential surfaces. A nonuniform periodically cusped magnet is used for focusing the sheet electron beam, which is predicted to exhibit 100% beam transmission efficiency in a 75-mm length drift tube. The high-frequency characteristics of the SWS and the beam-wave interaction are also studied. The results reveal that the designed TWT is expected to generate over 78.125-W average power at 214 GHz, and the 3-dB bandwidth is 31.5 GHz, ranging from 203 to 234.5 GHz.
机译:本文研究了一种基于交错双叶片慢波结构(SWS)的宽带220 GHz片束行波管(TWT)。提出了一种将衰减器加载到SWS中以抑制反向波振荡的新方法。另外,本文研究了一种新型的片状电子枪聚焦电极,它是一个整体结构,但被人为地分为两部分,一个用来压缩电子方向,另一个用来压缩电子束。电子束方向。另外,重新设计了新颖的阳极以减少由等电位表面引起的散焦效果。使用不均匀的周期性尖峰磁体聚焦电子薄片束,预计该电子束将在75毫米长的漂移管中显示100%的电子束传输效率。还研究了SWS的高频特性和束波相互作用。结果表明,设计的TWT有望在214 GHz时产生超过78.125 W的平均功率,而3 dB带宽为31.5 GHz,范围为203至234.5 GHz。

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