A Study of Slow-wave Structures Having Electric Field Components Transverse to the Direction of Wave Propagation |
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Contents
TransmissionLine Analysis | 3 |
Field Analysis | 11 |
Deflection Characteristics | 42 |
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Common terms and phrases
additional loading strips average E field basic propagation equation basic structure Characteristic Impedance Characteristics of Structure Cosh 8b Cosh ob cutoff frequency decreases with frequency direction of wave E field E₂ electric field Electrical length electron beam electron traveling equation 12 Equivalent Circuit equivalent structure Ey field filter FREQUENCY IN MCS FREQUENCY X 103 gain parameter given by curves guide wavelength half-section impedance looking impedance matching increased infinite-strip characteristics interaction space line of width loaded waveguide low phase velocities low-frequency cutoff main line microwave ohms oscilloscope Pierce power required predicting phase velocity propagation constant rectangular waveguide ridged waveguide section short-circuited shown in Fig slot resonance slow-wave structure spectrum analyzers strips to give structure of Fig structures have low STRUCTURES HAVING ELECTRIC Tanh theoretical analysis theoretical image impedance thin teeth top side transmission line transverse traveling probe traveling wave tube voltage wave propagation Z-direction ωε