Title :
Study on Wideband Sheet Beam Traveling Wave Tube Based on Staggered Double Vane Slow Wave Structure
Author :
Xianbao Shi ; Zhanliang Wang ; Xianfeng Tang ; Tao Tang ; Huarong Gong ; Qing Zhou ; Wenfei Bo ; Yabin Zhang ; Zhaoyun Duan ; Yanyu Wei ; Yubin Gong ; Jinjun Feng
Author_Institution :
Sch. of Phys. Electron., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
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 X-direction and the other is used to compress the electron beam in Y-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.
Keywords :
electron guns; millimetre wave generation; slow wave structures; backward wave oscillation suppression; bandwidth 31.5 GHz; electron beam compression; frequency 203 GHz to 234.5 GHz; nonuniform periodically cusped magnet; power 78.125 W; sheet beam gun; staggered double vane slow wave structure; wideband sheet beam traveling wave tube; Anodes; Attenuators; Electron beams; Electron tubes; Focusing; Phase change materials; 220-GHz traveling-wave tube (TWT); attenuator; electron gun; focusing electrode; periodically cusped magnet (PCM); sheet electron beam; slow-wave structure (SWS); staggered double vane; staggered double vane.;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2014.2365582