Title :
Self-Consistent Klystron Simulations
Author :
Carlsten, B.E. ; Tallerico, P.J.
Author_Institution :
AT-5, MS H827 Los Alamos National Laboratory, Los Alamos, NM 87545 USA
Abstract :
A numerical analysis of large-signal klystron behavior based on general wave-particle interaction theory is presented. The computer code presented is tailored for the minimum amount of complexity needed in klystron simulation. The code includes self-consistent electron motion, space-charge fields, and intermediate and output fields. It also includes use of time periodicity to simplify the problem, accurate representation of the space-charge fields, accurate representation of the cavity standing-wave fields, and a sophisticated particle-pushing routine. In the paper, examples are given that show the effects of cavity detunings, of varying the magnetic field profile, of electron beam asymmetries from the gun, and of variations in external load impedance.
Keywords :
Computational modeling; Electron beams; Impedance; Klystrons; Laboratories; Microwave devices; Numerical analysis; Optical modulation; Physics; Voltage;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.1985.4334198