Gyrotron parasitic-effects studies using the time-dependent self-consistent monomode code TWANG
Parasitic effects have recently appeared to be a potential limiting factor for reliable operation of high-power high-frequency gyrotrons. Within the domain of validity of a self-consistent monomode model, the time-dependent code TWANG has been developed with one of the aims devoted to the study of such parasitic instabilities. In a preliminary phase, the modeling of non-stationary behavior in frequency tunable gyrotrons for DNP-NMR applications have been simulated. Spurious effects such as After Cavity Interaction (ACI) in agreement with experimental observations are demonstrated and preliminary studies on parasitic oscillations in gyrotron beam-ducts have been initiated. © 2011 IEEE.
2011
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NON-REVIEWED
EPFL
Event name | Event place | Event date |
Houston, TX, USA | 2-7 October 2011 | |