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Low energy part of the CONCERT high-power proton linac

机译:CONCERT大功率质子直线加速器的低能耗部分

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The 1.3 GeV linac of the CONCERT multi-users facility has to accelerate protons and H/sup -/ ions in a series of current pulses distributed over each 20 ms period. The peak current is identical for all pulses to keep the space charge forces about constant apart from a slight emittance change between H/sup +/ and H/sup -/ bunches. The beam power required for a given application is then obtained by adjusting the pulse duration with a total maximum power of 20 MW and 5 MW for the proton and H/sup -/ beams respectively. The reference design of the low-energy part of this linac is made-up of two separate proton and H/sup ijectors up to 23 MeV, the H/sup -/ one using a funnelling system. These injectors are followed by a series of copper cavities up to the transition with superconducting cavities at about 185 MeV. The overall architecture, the technical choices and the beam dynamics in this high-power proton linac front end are presented and discussed.
机译:CONCERT多用户设施的1.3 GeV直线加速器必须在每个20 ms周期内分布的一系列电流脉冲中加速质子和H / sup- /离子。除了H / sup + /和H / sup- /束之间的微小发射率变化外,所有脉冲的峰值电流都相同,以使空间电荷力保持恒定。然后,通过调整脉冲持续时间来获得给定应用所需的束功率,对于质子束和H / sup- /束,总最大功率分别为20 MW和5 MW。该直线加速器低能部分的参考设计由两个独立的质子和高达23 MeV的H / sup i /喷射器组成,H / sup-/一个使用漏斗系统。这些注入器之后是一系列铜腔,直至过渡,并带有约185 MeV的超导腔。介绍并讨论了这种大功率质子直线加速器前端的总体架构,技术选择和射束动力学。

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