Validation study of the TESLA model for extended interaction klystron

The large-signal code TESLA (Telegraphist's Equations Solution for Linear-beam Amplifiers) was originally developed for the analysis and design of klystrons. It has now been applied to the simulations of an extended interaction klystron (EIK) for the first time. Results for the power transfer c...

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Published in2011 IEEE International Vacuum Electronics Conference (IVEC) pp. 89 - 90
Main Authors Chernyavskiy, Igor A., Berry, Dave, Vlasov, Alexander N., Antonsen, Thomas M., Chernin, David, Levush, Baruch, Hyttinen, Mark, Roitman, Albert, Horoyski, Peter, Dobbs, Richard
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.02.2011
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Abstract The large-signal code TESLA (Telegraphist's Equations Solution for Linear-beam Amplifiers) was originally developed for the analysis and design of klystrons. It has now been applied to the simulations of an extended interaction klystron (EIK) for the first time. Results for the power transfer curve and bandwidth curves computed for a G-band EIK compare well to their measured values. TESLA obtains these results almost two orders of magnitude faster than a 3D particle-in-cell simulation code.
AbstractList The large-signal code TESLA (Telegraphist's Equations Solution for Linear-beam Amplifiers) was originally developed for the analysis and design of klystrons. It has now been applied to the simulations of an extended interaction klystron (EIK) for the first time. Results for the power transfer curve and bandwidth curves computed for a G-band EIK compare well to their measured values. TESLA obtains these results almost two orders of magnitude faster than a 3D particle-in-cell simulation code.
Author Chernin, David
Hyttinen, Mark
Roitman, Albert
Dobbs, Richard
Antonsen, Thomas M.
Chernyavskiy, Igor A.
Levush, Baruch
Horoyski, Peter
Berry, Dave
Vlasov, Alexander N.
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  givenname: Richard
  surname: Dobbs
  fullname: Dobbs, Richard
  organization: CPI, Georgetown, Ontario, Canada
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Snippet The large-signal code TESLA (Telegraphist's Equations Solution for Linear-beam Amplifiers) was originally developed for the analysis and design of klystrons....
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StartPage 89
SubjectTerms Analytical models
Bandwidth
Cavity resonators
Computational modeling
extended interaction klystron
Klystrons
large-signal code
Mathematical model
simulations
Three dimensional displays
Title Validation study of the TESLA model for extended interaction klystron
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