Title :
Improved Corrugation Cross-Sectional Shape in Terahertz Double Corrugated Waveguide
Author :
Mineo, Mauro ; Paoloni, Claudio
Author_Institution :
Electron. Eng. Dept., Univ. of Rome Tor Vergata, Rome, Italy
Abstract :
The double corrugated waveguide, with square cross-sectional corrugations, was demonstrated as an effective slow-wave structure for terahertz vacuum electron devices. The moderate losses and the good interaction impedance, in both the forward- and backward-wave regimes, enable the design of tubes at terahertz frequencies. However, significant performance improvements would derive from a further reduction of losses and an increase of the interaction impedance. Different new cross-sectional shapes of the corrugations in the double corrugated waveguide are proposed to reduce the losses and improve the interaction impedance. A relevant improvement of the tube performance in both the forward- and backward-wave regimes is obtained by using the proposed new improved cross-sectional shapes.
Keywords :
electric impedance; losses; slow wave structures; vacuum tubes; waveguides; backward-wave regime; corrugation cross-sectional shape; forward-wave regime; interaction impedance; loss reduction; slow-wave structure; square cross-sectional corrugation; terahertz double corrugated waveguide; terahertz frequency; terahertz vacuum electron device; tube performance; Electromagnetic waveguides; Electron tubes; Impedance; Oscillators; Dispersion; double corrugated waveguide; losses; slow-wave structure (SWS); terahertz;
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2012.2216534