DocumentCode :
50427
Title :
Study of the Slow-Wave Properties of a Rectangular Groove-Loaded Folded Waveguide for Millimeter Traveling-Wave Tubes
Author :
Jun He ; Yanyu Wei
Author_Institution :
R&D Center of Space TravelingWave Tubes, Inst. of Electron., Beijing, China
Volume :
42
Issue :
1
fYear :
2014
fDate :
Jan. 2014
Firstpage :
55
Lastpage :
61
Abstract :
A novel slow-wave structure (SWS), called the rectangular groove-loaded folded waveguide SWS, is presented in this paper. Its high-frequency characteristics, which include the dispersion properties, normalized phase velocity, and the beam-wave interaction impedance, are analyzed by the field-matching method and calculated numerically. The calculation results by theory agree well with those obtained by the 3-D EM simulation software HFSS. The effects of the groove dimensions on the dispersion characteristics and interaction impedance are specifically studied. It is indicated from this investigation that the modified folded waveguide slow-wave structure with groove loading has the merit of higher interaction impedance but with narrower pass-band and sharper phase velocity dispersion compared to the conventional folded waveguide circuit. With proper groove dimensions, the higher gain and electron efficiency of a rectangular groove-loaded folded waveguide traveling wave tube could be obtained.
Keywords :
millimetre wave tubes; rectangular waveguides; slow wave structures; 3-D EM simulation software; HFSS; beam-wave interaction impedance; conventional folded waveguide circuit; dispersion properties; electron efficiency; field-matching method; groove dimensions; groove loading; high-frequency characteristics; millimeter traveling-wave tubes; normalized phase velocity; pass-band; phase velocity dispersion; rectangular groove-loaded folded waveguide; slow-wave properties; slow-wave structure; Analytical models; Bismuth; Dispersion; Electron beams; Electron tubes; Impedance; Rectangular waveguides; Folded waveguide; high-frequency characteristics; slow-wave structure (SWS); traveling-wave tube (TWT);
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2013.2282612
Filename :
6704352
Link To Document :
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