DocumentCode :
859915
Title :
Theoretical investigation of an advanced launcher for a 2-MW 170-GHz TE34,19 coaxial cavity gyrotron
Author :
Jin, Jianbo ; Thumm, Manfred ; Piosczyk, Bernhard ; Rzesnicki, Tomasz
Author_Institution :
Forschungszentrum Karlsruhe, Inst. fur Hochleistungsimpuls-und Mikrowellentechnik, Karlsruhe, Germany
Volume :
54
Issue :
3
fYear :
2006
fDate :
3/1/2006 12:00:00 AM
Firstpage :
1139
Lastpage :
1145
Abstract :
This paper investigates the antenna waveguide (launcher), the main component of the quasi-optical mode converter of a 2-MW 170-GHz TE34,19 coaxial cavity gyrotron, which is under development within the European Union. For coaxial gyrotrons operating in very high-order cavity modes like the TE34,19, due to the ratio of the caustic to cavity radius of 0.323, the transformation of the high-order cavity mode into a nearly Gaussian distribution cannot be done as good as for gyrotron modes where the ratio of caustic to cavity radius is approximately 0.5. The simulation results for the TE34,19 mode show that the average and peak values of the power density at the edges of the cuts of a conventional dimpled-wall launcher are approximately 32.3 W/cm2 and 63.8, respectively, which will produce diffraction losses and reflection of power from the cuts. This paper reports on an advanced launcher for which average and peak values of power density of 1.9 and 5.4 W/cm2 at the edges of the cuts are achieved, and a well-focused field at the aperture with a scalar Gaussian mode content of 94.8% is obtained.
Keywords :
Gaussian distribution; coaxial waveguides; gyrotrons; waveguide antennas; 170 GHz; 2 MW; Gaussian distribution; antenna waveguides; coaxial cavity gyrotron; coupled-mode theory; dimpled-wall launcher; power density; quasi-optical mode converter; scalar Gaussian mode; very high-order cavity mode; wall perturbation; Coaxial components; Gaussian distribution; Geometrical optics; Gyrotrons; Magnetic confinement; Magnetic resonance; Optical waveguides; Plasma applications; Plasma confinement; Plasma devices; Coupled-mode theory; gyrotron; quasi-optical (QO) mode converter; wall perturbations;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2005.864114
Filename :
1603861
Link To Document :
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