DocumentCode :
3608053
Title :
Setup and Characterization of a Backward Wave Oscillator Delay Line Scaled Down to Centimeter- and Millimeter-Wave Ranges
Author :
Villeneuve, Remy ; Cueille, Marylene ; Arnaud-Cormos, Delia ; David, Jean-Francois ; Leveque, Philippe ; Durand, Alain-Joseph
Author_Institution :
Centre Hospitalier Princesse Grace, Monaco
Volume :
5
Issue :
6
fYear :
2015
Firstpage :
1053
Lastpage :
1061
Abstract :
The output power of backward wave oscillators and carcinotrons decrease considerably at high frequencies. This drop in power can be due to the increase in losses and manufacturing defects in their delay lines. In this study, we present measurement methods and setups developed for the characterization of delay-line performance. The developed methods were validated on two scaled-down models of a TH4229 carcinotron operating in frequency bandwidths around 10 and 100 GHz. Measurements of losses and dispersion diagrams were made using two different wave couplings with propagating waveguides and radiating horn antennas. Electromagnetic simulations were performed using finite-difference time-domain (FDTD) code. For both delay lines, the results obtained from measurements with different couplings presented a very good level of consistency with simulations. The measured losses, normalized per delay line elementary cell, were 0.04 and 0.12 dB/cell at 9.5 and 95 GHz, respectively. Accordingly, the normalized ohmic losses were extrapolated at THz frequencies and at 0.95 THz, 0.38 dB/cell was obtained. As a first approximation, only the skin-effect ohmic losses were considered. The ability to characterize delay lines using radiating coupling was demonstrated.
Keywords :
backward wave oscillators; carcinotrons; delay lines; finite difference time-domain analysis; loss measurement; microwave measurement; microwave tubes; millimetre wave measurement; millimetre wave tubes; skin effect; terahertz wave devices; FDTD code; TH4229 carcinotron; backward wave oscillator delay line; centimeter-wave range; dispersion diagram; electromagnetic simulation; finite-difference time-domain code; frequency 0.95 THz; frequency 9.5 GHz; frequency 95 GHz; frequency bandwidth; horn antenna; millimeter-wave range; propagating waveguide; radiating coupling; skin-effect ohmic loss; wave coupling; Antenna measurements; Blades; Couplings; Delay lines; Electron tubes; Horn antennas; Loss measurement; Backward-wave oscillator (BWO); carcinotron; delay lines dispersion and losses; measurements methods; microwaves; millimeter and submillimeter waves;
fLanguage :
English
Journal_Title :
Terahertz Science and Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
2156-342X
Type :
jour
DOI :
10.1109/TTHZ.2015.2480598
Filename :
7295631
Link To Document :
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