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Radiation containment at a 1 MW high energy electron accelerator: Status of LCLS-II radiation physics design

机译:1 MW高能电子加速器的辐射遏制:LCLS-II辐射物理设计的现状

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LCLS-II will add a 4 GeV, 1 MHz, SCRF electron accelerator in the first 700 meters of the SLAC 2-mile Linac, as well as adjustable gap polarized undulators in the down-beam electron lines, to produce tunable, fully coherent X-rays in programmable bunch patterns. This facility will work in unison with the existing Linac Coherent Light Source, which uses the legacy copper cavities in the last third of the linac to deliver electrons between 2 and 17 GeV to an undulator line. The upgrade plan includes new beam lines, five stages of state of the art collimation that shall clean the high-power beam well up-beam of the radio-sensitive undulators, and new electron and photon beam dumps. This paper describes the challenges encountered to define efficient measures to protect machine, personnel, public and the environment from the potentially destructive power of the beam, while maximizing the reuse of existing components and infrastructure, and allowing for complex operational modes.
机译:LCLS-II将在SLAC 2英里直线加速器的前700米增加一个4 GeV,1 MHz SCRF电子加速器,并在下束电子线中增加可调间隙极化起伏器,以产生可调谐的,完全相干的X -以可编程束模式发出光线。该设施将与现有的直线加速器相干光源协同工作,该直线加速器使用直线加速器最后三分之一中的传统铜腔将2到17 GeV之间的电子传递至起伏器线。升级计划包括新的光束线,五个水平的准直阶段,这些阶段将清洁辐射敏感波荡器的高功率光束井光束,以及新的电子和光子束流收集器。本文介绍了在定义有效措施以保护机器,人员,公众和环境免受光束潜在破坏力的同时最大程度地重复利用现有组件和基础架构并允许复杂操作模式时所面临的挑战。

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