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- W2100308883 abstract "Heavy-ion linacs are optimally designed using independently-phased resonant cavities which must be empirically tuned for the correct beam radio frequency (RF) phase relationship for a variety of beams with different charge-to-mass ratios. Superconducting resonators at the Argonne Tandem Linear Accelerator System (ATLAS) have traditionally been tuned by adjusting the resonator’s phase and amplitude while using a surface barrier detector to measure the energy gain. For resonators at the beginning of the linac where small changes in phase result in large changes in beam steering properties, this method of tuning resonators is difficult and time consuming. A new Vsystem-based [1] process has been developed to automatically tune resonators by using the RF signal induced by the beam in a nearby downstream resonator. This new method for determining the correct accelerating phase of a resonator is accomplished by varying its phase and observing the resulting changes in the induced signal. The beaminduced phase can be accurately measured by a lock-in amplifier that filters noise and harmonic signals. A General Purpose Interface Bus (GPIB) module is used to retrieve data from the lock-in amplifier. The Vsystem process provides tabular and graphical displays of the induced-field amplitude and phase as a function of the accelerating resonator’s phase. The process also reports lock-in amplifier error status messages, and determines the optimal phase setting for the accelerating resonator. The new method for tuning resonators with an induced signal pickup in a secondary resonator is a prototype diagnostic method for the proposed Rare Isotope Accelerator (RIA) facility." @default.
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- W2100308883 date "2003-01-01" @default.
- W2100308883 modified "2023-09-25" @default.
- W2100308883 title "DEVELOPMENT OF A RESONATOR TUNING SYSTEM USING AN INDUCED SIGNAL PICKUP" @default.
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