Title :
Microwave frequency determination mechanisms in a coaxial vircator
Author :
Chen, Xupeng ; Dickens, James ; Mankowski, John ; Hatfield, Lynn L. ; Choi, Eun Ha ; Kristiansen, Magne
Author_Institution :
Dept. of Electr. & Electron. Eng., Huazhong Univ. of Sci. & Technol., Wuhan, China
Abstract :
Traditionally, the radiated microwave frequency in a coaxial vircator is considered to be determined primarily by the virtual cathode oscillation frequency and the electron reflection frequency. In this paper, some experiments showing different results are reported. In particular, the E-beam is observed to play an important role in the cavity formation. Some possible explanations, including a virtual cavity concept, are proposed. The cavity resonance effect on a coaxial virtual cathode oscillator with different geometries has been investigated in detail. Investigation of the E-beam performance will improve understanding of the interaction between the E-beam and microwaves, which is a key for determining the microwave frequency. These results are helpful in optimizing the design of a cylindrical diode to avoid microwave frequency shifting and mode competition.
Keywords :
cavity resonators; diodes; microwave generation; vircators; beam-microwave interaction; cavity resonance; coaxial vircator; cylindrical diode; electron reflection frequency; microwave frequency shifting; mode competition; virtual cathode oscillation frequency; Cathodes; Coaxial components; Design optimization; Diodes; Electrons; Geometry; Microwave frequencies; Microwave oscillators; Reflection; Resonance; Coaxial vircator; high-power microwave source; microwave resonant cavity; virtual cavity;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2004.835443