DocumentCode :
1224412
Title :
Periodic Permanent-Magnet Quadrupole Focusing Lattices for Linear Electron-Beam Amplifier Applications
Author :
Abe, David K. ; Kishek, Rami A. ; Petillo, John J. ; Chernin, David P. ; Levush, Baruch
Author_Institution :
U.S. Naval Res. Lab., Washington, DC
Volume :
56
Issue :
5
fYear :
2009
fDate :
5/1/2009 12:00:00 AM
Firstpage :
965
Lastpage :
973
Abstract :
Periodic lattices of permanent-magnet quadrupoles (PMQs) have the potential to provide the strong focusing necessary to transport high-current space-charge-dominated electron beams commonly used in vacuum electronic power amplifiers. We describe a new design methodology and computational tools to produce optimized PMQ lattices, verifying the results with fully 3-D particle simulations of design examples. These examples include a PMQ system with a greater than fivefold reduction in magnet weight and volume compared with a periodic permanent-magnet (PPM) stack designed for a comparable beam and a PMQ system that can stably transport a factor of three times more current than a comparable PPM system. We conclude with a simple analysis of the interaction between the elliptical beam in the PMQ lattice with the waves on a helical traveling-wave circuit. In addition to enabling higher RF power operation, we show that the higher beam currents afforded by PMQ focusing enable a higher power gain per unit length and result in more compact form factors and higher amplifier power densities compared with comparable PPM-focused circuits.
Keywords :
electron beam focusing; permanent magnets; power amplifiers; vacuum tubes; 3D particle simulations; PMQ focusing; helical traveling-wave circuit; high-current space-charge-dominated electron beams; higher RF power operation; linear electron-beam amplifier applications; periodic permanent-magnet quadrupole focusing lattice; power gain; vacuum electronic power amplifiers; Circuits; Computational modeling; Design methodology; Design optimization; Electron beams; High power amplifiers; Lattices; Magnetic analysis; Operational amplifiers; Radio frequency; Electron beam; linear beam; permanent magnet; quadrupole; vacuum electronics;
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2009.2015629
Filename :
4810129
Link To Document :
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