DocumentCode
3570323
Title
Design and experiment of electron optical system for 0.22THz folded waveguide traveling wave tube
Author
Rui Song ; Quanfeng Zhou ; Wenqiang Lei ; Yi Jiang ; Peng Hu ; Guowu Ma ; Hongbin Chen
Author_Institution
CAEP, Inst. of Appl. Electron., Mianyang, China
fYear
2015
Firstpage
1
Lastpage
2
Abstract
This paper introduces the design method of the electron optical system for a 0.22THz folded waveguide traveling wave tube. As the electron beam current is 10mA and the beam channel radius of the tube is only about 0.1mm, the PPM(period permanent magnet) focusing system needs to be carefully designed to transmit this beam current from the electron gun to the collector. A tree-electrode Pierce gun is adopted. The electrodes and PPM are optimized to obtain proper beam waist radius and range to get high transmission efficiency. Maxwell is used to calculate the magnetic flux density on the beam line, and CST is used to simulate the beam transmission. The simulation shows that about 80% of the electron beam reaches the collector and is verified by experiments, which gets about 74% transmission efficiency without magnetic modification. After magnetic modification, the transmission efficiency is improved to 93%, and this tube is able to run in DC mode.
Keywords
electrodes; electron beams; electron guns; magnetic flux; travelling wave tubes; beam channel radius; beam line; beam transmission; current 10 mA; electron beam current; electron gun; electron optical system; folded waveguide traveling wave tube; frequency 0.22 THz; magnetic flux density; magnetic modification; period permanent magnet focusing system; transmission efficiency; tree-electrode Pierce gun; Electron beams; Electron optics; Electron tubes; Magnetic flux; Magnetic noise; Magnetic shielding; Optical waveguides; PPM; Terahertz; electron optical system; folded waveguide travelling wave tube; transmission efficiency;
fLanguage
English
Publisher
ieee
Conference_Titel
Vacuum Electronics Conference (IVEC), 2015 IEEE International
Print_ISBN
978-1-4799-7109-1
Type
conf
DOI
10.1109/IVEC.2015.7224000
Filename
7224000
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