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Beam dynamics studies in the driver LINAC pre-stripper section of the RIA facility

机译:RIA设备的驾驶员LINAC预剥离器部分中的光束动力学研究

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The RIA facility driver LINAC consists of about 400 superconducting (SC) independently phased rf cavities. The LINAC is designed to accelerate simultaneously several charge-state beams to generate as much as 400 kW of uranium beam power. The LINAC beam dynamics is most sensitive to the focusing and accelerating structure parameters of the pre-stripper section, where the uranium beam is accelerated from 0.17 keV/u to 9.4 MeV/u. This section is designed to accept and accelerate two charge states (28 and 29) of uranium beam from an ECR ion source. The pre-stripper section must be designed to minimize the beam emittance distortion of this two-charge-state beam. In particular, the inter-cryostat spaces must be minimized and beam parameters near transitions of the accelerating and focusing lattices must be matched carefully. Several sources of possible effective emittance growth are considered in the design of the pre-stripper section and a tolerance budget is established. Numerical beam dynamics studies include realistic electric and magnetic three-dimensional ???eld distributions in the SC rf cavities and SC solenoids. Error effects in the longitudinal beam parameters are studied.
机译:RIA设备驱动程序LINAC由大约400个超导(SC)独立定相的RF腔组成。 LINAC旨在同时加速多个电荷状态束,以产生多达400 kW的铀束功率。 LINAC束动力学对预剥离器截面的聚焦和加速结构参数最为敏感,在预剥离器截面中,铀束从0.17 keV / u加速到9.4 MeV / u。本部分旨在接受和加速来自ECR离子源的铀束的两个电荷状态(28和29)。预剥离器部分必须设计成使该双电荷状态光束的光束发射畸变最小。特别是,低温恒温器之间的空间必须最小化,并且加速和聚焦晶格过渡附近的光束参数必须仔细匹配。在预剥离器部分的设计中考虑了可能有效发射率增长的几种来源,并建立了公差预算。数值束动力学研究包括在SC rf腔和SC螺线管中的实际电和磁三维场分布。研究了纵梁参数中的误差影响。

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