Title :
Photonic-band-gap (PBG) and metamaterial RF-structures for high power millimeter and THz wave electron beam devices
Author :
Shin, Y.M. ; Palm, A. ; Zhu, Xinen
Author_Institution :
Dept. of Phys., Northern Illinois Univ., DeKalb, IL, USA
Abstract :
Novel photonic band gap (PBG) waveguides and metamaterial (MM) cavities have been designed in the effort to develop high power millimeter and THz sources. The designed structures are comprised of a periodically corrugated channel sandwiched between two PBG slabs and a multi-cell cavity-resonator designed with fishnet apertures. The simulation analysis shows that trapped non-PBG modes are effectively suppressed down to ~ - 14.3 dB/cm, while PBG modes propagated with ~ 2 dB of insertion loss, corresponding to ~1.14 dB/cm attenuation. The preliminary modeling analysis on the fishnet-embedded cavity shows noticeable improvement of Q-factor and field gradient of the operating mode (TM010) compared to those of typical pillbox- or PBG-cavities. The Ka-band PBG-waveguide and S-band fishnet cavity structures will be tested with a microwave test bench/8510C Network Analyzer and 5.5 MW S-band klystron. These structures can be applied to stable short-bunch formation and mono-energetic radiation in high frequency electron beam devices.
Keywords :
cavity resonators; electron beams; klystrons; microwave metamaterials; millimetre wave devices; network analysers; photonic band gap; submillimetre wave devices; waveguides; Ka-band PBG-waveguide; MM cavities; PBG slabs; PBG-cavities; Q-factor; S-band fishnet cavity structures; S-band klystron; THz sources; THz wave electron beam devices; corrugated channel; field gradient; fishnet apertures; fishnet-embedded cavity; insertion loss; metamaterial RF-structures; metamaterial cavities; microwave test bench-8510C network analyzer; millimeter sources; millimeter wave electron beam devices; monoenergetic radiation; multicell cavity resonator; nonPBG modes; photonic band gap; pillbox-cavities; power 5.5 MW; Arrayed waveguide gratings; Cavity resonators; Electron beams; Klystrons; Radio frequency;
Conference_Titel :
Infrared, Millimeter, and Terahertz waves (IRMMW-THz), 2014 39th International Conference on
Conference_Location :
Tucson, AZ
DOI :
10.1109/IRMMW-THz.2014.6956242