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A new two-step tuning procedure for a photocathode gun

机译:光电阴极枪的新两步调整程序

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An important aspect of the development of multi-cell RF accelerating structures is tuning the resonant frequency f of the operating mode, field balance e_b, and waveguide to cavity coupling coefficient β to the desired values. Earlier theoretical analyses have not been able to predict all three parameters simultaneously for a coupled-cavity system. We have developed a generalized circuit analysis to predict f, e_b, and β of a coupled structure, based on the RF properties of the individual, uncoupled, cells. This has been used to develop a simplified two-step tuning procedure to tune a BNL/SLAC/UCLA type 1.6 cell S-band photocathode gun by varying RF properties of individual half and full cells, which are easily measurable. This procedure has been validated by tuning two true-to-scale prototypes made of aluminum and ETP copper to the desired values of the RF parameters.
机译:多单元射频加速结构发展的一个重要方面是将工作模式的谐振频率f,场平衡e_b和波导至腔的耦合系数β调整到所需值。早期的理论分析无法同时预测耦合腔系统的所有三个参数。我们已经开发了一种广义的电路分析,可以基于单个非耦合单元的RF特性来预测耦合结构的f,e_b和β。它已被用于开发简化的两步调谐程序,以通过改变单个半电池和满电池的RF特性来调节BNL / SLAC / UCLA类型的1.6单元S波段光电阴极枪,该方法很容易测量。通过将两个由铝和ETP铜制成的真实比例的原型调整到RF参数的期望值,已经验证了此过程。

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