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X-ray optics simulation and beamline design for the APS upgrade

机译:用于APS升级的X射线光学仿真和光束线设计

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The upgrade of the Advanced Photon Source (APS) to a Multi-Bend Achromat (MBA) will increase the brightness of the APS by between two and three orders of magnitude. The APS upgrade (APS-U) project includes a list of feature beamlines that will take full advantage of the new machine. Many of the existing beamlines will be also upgraded to profit from this significant machine enhancement. Optics simulations are essential in the design and optimization of these new and existing beamlines. In this contribution, the simulation tools used and developed at APS, ranging from analytical to numerical methods, are summarized. Three general optical layouts are compared in terms of their coherence control and focusing capabilities. The concept of zoom optics, where two sets of focusing elements (e.g., CRLs and KB mirrors) are used to provide variable beam sizes at a fixed focal plane, is optimized analytically. The effects of figure errors on the vertical spot size and on the local coherence along the vertical direction of the optimized design are investigated.
机译:先进光子源(APS)到多弯消色差(MBA)的升级将通过数量级的两个和三个之间增加了APS的亮度。该APS升级(APS-U)项目包括,将采取的新机充分利用光束线功能的列表。许多现有的光束线也将被升级到利润从这个显著机增强。光学模拟是在设计和这些新的和现有光束线的优化是必不可少的。在这方面的贡献,用在APS开发,从分析到数值方法模拟工具,进行了总结。三点普光学布局,在他们的协调控制和聚焦能力方面进行比较。缩放光学器件,其中,使用两组聚焦元件(例如,CRL和KB镜)的以固定焦平面提供可变束尺寸的概念,以解析优化。上的垂直光点尺寸以及对沿优化设计的垂直方向上的局部相干性数字误差的影响进行了研究。

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