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Sources of Beam Halo Formation In Heavy-Ion Superconducting Linac And Development Of Halo Cleaning Methods

机译:重离子超导线梁光源光源和卤素清洁方法的开发

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The proposed Rare Isotope Accelerator (RIA) Facility, an innovative exotic-beam facility for production of high-quality energetic beams of short-lived isotopes, will contain two superconducting linacs. To produce sufficient intensities of secondary beams the driver linac will provide 400 kW accelerated beams of any ion from hydrogen to uranium. A detailed design has been developed for the focusing-accelerating lattice of the RIA driver linac which is configured as an array of short SC cavities, each with independently controllable rf phase. To obtain high-power heavy-ion beams the driver linac uses simultaneous acceleration of multiple charge states and two strippers. End-to-end beam dynamics simulations in six-dimensional phase space were applied to study all possible sources of beam halo formation in the driver linac. The concept of a "beam-loss-free" linac is developed and implies beam halo collimation in designated areas.
机译:建议的稀有同位素加速器(RIA)设施,一种用于生产高质量的短型同位素的高质量充沛的梁的创新异种束设施,将含有两个超导的LINAC。为了产生足够的次梁强度,驾驶员LINAC将提供从氢气到铀的任何离子的400kW加速束。已经为RIA驱动器LINAC的聚焦加速晶格开发了详细的设计,其被配置为短SC腔阵列,每个阵列具有可独立可控的RF相位。为了获得高功率重离子束,驱动器Linac使用多个充电状态和两个剥离器的同时加速。应用了六维相空间的端到端梁动力学模拟,以研究驾驶员LINAC中的所有可能的光束光环源。开发了“无磁光束”LINAC的概念,并意味着在指定区域中的束光环准直。

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