DocumentCode :
1754649
Title :
Analysis of Alternate Dielectric and Metal Vane Loaded Circular Waveguide for a Wideband Gyro-TWT
Author :
Kesari, V.
Author_Institution :
Microwave Tube R&D Centre, Bangalore, India
Volume :
61
Issue :
3
fYear :
2014
fDate :
41699
Firstpage :
915
Lastpage :
920
Abstract :
A composite circular waveguide interaction structure of a gyro-traveling-wave tube (gyro-TWT) consisting of azimuthally periodic alternate dielectric and metal vanes projecting radially inward from the waveguide wall was analyzed by the field matching technique considering the effect of azimuthal harmonics. The dispersion relation of the waveguide excited in the TE mode obtained by the analysis was validated against the simulation within 5% and then used to find the optimum structure parameters for wideband coalescence between the beam and the waveguide mode dispersion characteristics for wideband device performance. The dispersion data fed into the gyro-TWT gain formula established the superiority of the proposed composite dielectric- and metal-vane-loaded waveguide in providing a wide bandwidth of the device without much sacrifice of its gain while requiring a lower beam voltage and magnetic field, over a waveguide loaded by a dielectric lining alone or by metal vanes alone.
Keywords :
circular waveguides; dielectric-loaded waveguides; dispersion (wave); gyrotrons; travelling wave tubes; TE mode; azimuthal harmonic effect; azimuthally periodic alternate dielectric analysis; beam voltage; composite circular waveguide interaction structure; composite dielectric-loaded waveguide; dielectric lining; field matching technique; gyro-traveling-wave tube; magnetic field; metal vane loaded circular waveguide; metal-vane-loaded waveguide; waveguide mode dispersion characteristics; waveguide wall; wideband device performance; wideband gyro-TWT; Bandwidth; Blades; Dielectrics; Dispersion; Loaded waveguides; Metals; Corrugated structures; dielectric-loaded circular waveguide; dispersion shaping; gyro-traveling-wave tube (gyro-TWT) interaction structure; wideband gyro-TWT;
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2014.2301273
Filename :
6731544
Link To Document :
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