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 |
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container_title | IEEE transactions on terahertz science and technology |
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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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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.</description><subject>Cathodes</subject><subject>Cavity resonators</subject><subject>Electron beams</subject><subject>High power terahertz (THz) radiation</subject><subject>Klystrons</subject><subject>Modulation</subject><subject>Oscillators</subject><subject>Radio frequency</subject><subject>terahertz (THz)</subject><subject>vacuum electronic devices</subject><issn>2156-342X</issn><issn>2156-3446</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2011</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNo9j91Kw0AQhRdRsNQ-gHiTF0ic2d_mUko1QkHBKOJN2GxmbaQ1spsi-vRNaOm5mXMx34GPsWuEDBHy27IsPjIOiBlHhRrhjE2GplMhpT4_df5-yWYxfsEQpcXcyAnL3qzb7bbJckOuD91365Ki_Vwnz90vhaSkYNcU-v_kpdsFR_GKXXi7iTQ73il7vV-WiyJdPT08Lu5WqeNa9SnRvBHekhLc5IjoiYxxXljdcOmbGgznknwtfW0JsBYgBgIaD9BIqYyYMjzsutDFGMhXP6Hd2vBXIVSjczU6V6NzdXQemJsD0xLR6V_luZBGiz1lu1K2</recordid><startdate>201109</startdate><enddate>201109</enddate><creator>Booske, J. H.</creator><creator>Dobbs, R. J.</creator><creator>Joye, C. D.</creator><creator>Kory, C. L.</creator><creator>Neil, G. R.</creator><creator>Gun-Sik Park</creator><creator>Jaehun Park</creator><creator>Temkin, R. J.</creator><general>IEEE</general><scope>97E</scope><scope>RIA</scope><scope>RIE</scope><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>201109</creationdate><title>Vacuum Electronic High Power Terahertz Sources</title><author>Booske, J. H. ; Dobbs, R. J. ; Joye, C. D. ; Kory, C. L. ; Neil, G. R. ; Gun-Sik Park ; Jaehun Park ; Temkin, R. 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R.</creatorcontrib><creatorcontrib>Gun-Sik Park</creatorcontrib><creatorcontrib>Jaehun Park</creatorcontrib><creatorcontrib>Temkin, R. J.</creatorcontrib><collection>IEEE All-Society Periodicals Package (ASPP) 2005-present</collection><collection>IEEE All-Society Periodicals Package (ASPP) 1998-Present</collection><collection>IEEE Electronic Library (IEL)</collection><collection>CrossRef</collection><jtitle>IEEE transactions on terahertz science and technology</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Booske, J. H.</au><au>Dobbs, R. J.</au><au>Joye, C. D.</au><au>Kory, C. L.</au><au>Neil, G. R.</au><au>Gun-Sik Park</au><au>Jaehun Park</au><au>Temkin, R. J.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Vacuum Electronic High Power Terahertz Sources</atitle><jtitle>IEEE transactions on terahertz science and technology</jtitle><stitle>TTHZ</stitle><date>2011-09</date><risdate>2011</risdate><volume>1</volume><issue>1</issue><spage>54</spage><epage>75</epage><pages>54-75</pages><issn>2156-342X</issn><eissn>2156-3446</eissn><coden>ITTSBX</coden><abstract>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 <; 0.1 to >; 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.</abstract><pub>IEEE</pub><doi>10.1109/TTHZ.2011.2151610</doi><tpages>22</tpages></addata></record> |
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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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