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Status of RF Development Work on a Ferrite Tuned Amplifier Cavity for the TRIUMF KAON Factory

机译:用于TRIUmF KaON工厂的铁氧体调谐放大器腔的RF开发工作现状

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Of the five synchrotron rings in the proposed TRIUMF KAON factory, the Booster ring to accelerate the proton beam from 440 MeV to 3 GeV has the most demanding rf requirements, primarily because of the relatively large frequency swing of 46.1 MHz to 61.1 MHz at a high repetition rate of 50 Hz. In the current reference design, the Booster lattice has twelve 3.9 m drift spaces with 2.5 m in each drift space available for installation of rf cavities to provide a required effective acceleration voltage of up to 600 kV per turn, i.e., 50 kV cavity. Design and development studies of a suitable cavity-amplifier system are in progress. For the initial reference design a system based on the one used in the Fermilab booster synchrotron has been chosen. That is, a double-gap drift-tube cavity with parallel-biased ferrite tuners and excited with a directly coupled Eimac Y567B tetrode. Design procedure used to meet the tuning and voltage requirements within the various mechanical and other constraints, such as tube to gap voltage ratio, ferrite power density and available space will be discussed along with results from cold model tests. (ERA citation 12:043870)

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