Vacuum Electronic High Power Terahertz Sources

Recent research and development has been incredibly successful at advancing the capabilities for vacuum electronic device (VED) sources of powerful terahertz (THz) and near-THz coherent radiation, both CW or average and pulsed. Currently, the VED source portfolio covers over 12 orders of magnitude i...

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Veröffentlicht in:IEEE transactions on terahertz science and technology 2011-09, Vol.1 (1), p.54-75
Hauptverfasser: Booske, J. H., Dobbs, R. J., Joye, C. D., Kory, C. L., Neil, G. R., Gun-Sik Park, Jaehun Park, Temkin, R. J.
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container_issue 1
container_start_page 54
container_title IEEE transactions on terahertz science and technology
container_volume 1
creator Booske, J. H.
Dobbs, R. J.
Joye, C. D.
Kory, C. L.
Neil, G. R.
Gun-Sik Park
Jaehun Park
Temkin, R. J.
description Recent research and development has been incredibly successful at advancing the capabilities for vacuum electronic device (VED) sources of powerful terahertz (THz) and near-THz coherent radiation, both CW or average and pulsed. Currently, the VED source portfolio covers over 12 orders of magnitude in power (mW-to-GW) and two orders of magnitude in frequency (from ; 10 THz). Further advances are still possible and anticipated. They will be enabled by improved understanding of fundamental beam-wave interactions, electromagnetic mode competition and mode control, along with research and development of new materials, fabrication methods, cathodes, electron beam alignment and focusing, magnet technologies, THz metrology and advanced, broadband output radiation coupling techniques.
doi_str_mv 10.1109/TTHZ.2011.2151610
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subjects Cathodes
Cavity resonators
Electron beams
High power terahertz (THz) radiation
Klystrons
Modulation
Oscillators
Radio frequency
terahertz (THz)
vacuum electronic devices
title Vacuum Electronic High Power Terahertz Sources
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