Title :
Conductor-centered arbitrarily-shaped helical-groove slow-wave structure for TWTs
Author :
Yanyu Wei ; Guofen Yu ; Wenxiang Wang ; Yubin Gong ; Shenggang Liu ; Gun-Sik Park
Author_Institution :
Nat. Key Lab of High Power Vacuum Electron., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
Summary form only given, as follows. Helical-Groove waveguide(HGW) traveling wave tube (TWT) is one of the potential alternative candidates for high power millimeter wave sources. In this paper, we present the analysis of the novel helical-groove waveguides, the conductor-centered arbitrarily-shaped helical-groove structures, for a possible employment in a wide band TWTs in slow-wave regime. By making use of field theory and admittance, the dispersion relation, interaction impedance are derived. Numerical analysis has performed with HGW-2[3] code to investigate the physical parameters including the groove shape, the radius of the center rod on the wave properties of the electromagnetic (EM) wave propagating through the conductor-centered arbitrarily-shaped helical-groove structure. As it shown from the dispersion characteristics, the profile of the groove takes large influence on high cut-off frequency, passband and wave velocities. This analysis also shows the interaction impedance and small signal gain of TWT with the variation of the physical parameters, indicating the bandwidth of HGW-TWT can be increased largely by choosing a conductor-centered arbitrarily-shaped helical-groove structure with a triangle profile of the groove.
Keywords :
computational electromagnetics; helical waveguides; millimetre wave generation; slow wave structures; admittance; conductor-centered arbitrarily-shaped structure; dispersion relation; electromagnetic wave properties; field theory; groove shape; helical-groove slow-wave structure; helical-groove waveguide traveling wave tube; high cut-off frequency; interaction impedance; millimeter wave sources; small signal gain; triangle profile; wide band TWT; Admittance; Cutoff frequency; Dispersion; Electromagnetic propagation; Electromagnetic scattering; Electromagnetic waveguides; Employment; Impedance; Numerical analysis; Wideband;
Conference_Titel :
Plasma Science, 2003. ICOPS 2003. IEEE Conference Record - Abstracts. The 30th International Conference on
Conference_Location :
Jeju, South Korea
Print_ISBN :
0-7803-7911-X
DOI :
10.1109/PLASMA.2003.1228922