Title :
Behavior of the positron beam of the super-ACO storage ring in response to a modification of the RF frequency for free-electron laser experiments
Author :
Couprie, M.-E. ; Billardon, M.
Author_Institution :
Lab. pour l´´Utilisation du Rayonnement Electromagnetique, Univ. de Paris-Sud, Orsay, France
fDate :
3/1/1994 12:00:00 AM
Abstract :
The macrotemporal structure of the super-ACO storage ring free-electron laser (FEL) can be either continuous, pulsed, or chaotic, and can present some rapid fluctuations. The temporal evolution of a storage ring FEL involves both the longitudinal motion of the positron beam (especially the synchrotron oscillations) and the FEL dynamics, as in a coupled system. Studies on the dynamics of the positron beam are performed here, in the goal to have a stable source for FEL applications, and to determine the conditions for a stable Q-switching experiment, The employed method is to study the influence of a controlled change of the radio frequency (RF) (modulation or frequency jump) on the beam. A simple theoretical model taking into account the perturbed RF system is presented to help the understanding of the experimental data. The different methods of measurement are described. Then, the results are given for several experimental conditions and the influence of different possible adjustments (synchrotron feedback, RF loop...) is presented. Consequences are derived for the FEL
Keywords :
Q-switching; electron beams; free electron lasers; storage rings; FEL dynamic; chaotic; continuous; coupled system; free-electron laser experiments; frequency jump; longitudinal motion; macrotemporal structure; modulation; perturbed radiofrequency system; positron beam; pulsed; rapid fluctuations; simple theoretical mode; stable Q-switching experiment; super-ACO storage ring free-electron laser; synchrotron feedback; synchrotron oscillations; temporal evolution; Chaos; Fluctuations; Free electron lasers; Laser beams; Optical pulses; Positrons; Radio frequency; Ring lasers; Storage rings; Synchrotrons;
Journal_Title :
Quantum Electronics, IEEE Journal of