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Progress on the Development of the Next Generation X-ray Beam Position Monitors at the Advanced Photon Source

机译:高级光子源上下一代X射线梁位置监视器的开发进展

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Accurate and stable x-ray beam position monitors (XBPMs) are key elements in obtaining the desired user beam stability in the Advanced Photon Source (APS). The next generation XBPMs for high heat load front ends (HHL FEs) have been designed to meet these requirements by utilizing Cu K-edge x-ray fluorescence (XRF) from a pair of copper absorbers and have been installed at the front ends (FEs) of the APS. Commissioning data showed a significant performance improvement over the existing photoemission-based XBPMs. While a similar design concept can be applied for the canted undulator front ends, where two undulator beams are separated by 1.0-mrad, the lower beam power (< 10 kW) per undulator allows us to explore lower-cost solutions based on Compton scattering from the diamond blades placed edge-on to the x-ray beam. A prototype of the Compton scattering XBPM system was installed at 24-ID-A in May 2015. In this report, the design and test results for XRF-based XBPM and Compton scattering based XBPM are presented. Ongoing research related to the development of the next generation XBPMs on thermal contact resistance of a joint between two solid bodies is also discussed.
机译:精确且稳定的X射线束位置监视器(XBPMS)是获得高级光子源(APS)中所需的用户光束稳定性的关键元件。用于高热负荷前端(HHL FES)的下一代XBPMS通过利用来自一对铜吸收器的Cu K-Edge X射线荧光(XRF)来满足这些要求,并且已安装在前端(FES )APS。调试数据显示出对现有的基于光电激励的XBPMS的显着改进。虽然可以应用类似的设计概念,用于倾斜的悬垂式前端,其中两个波线梁由1.0-mrad分开,但每个波线的下光束功率(<10 kW)允许我们根据Compton散射探索低成本的解决方案金刚石刀片放置在X射线束上。康普顿散射XBPM系统的原型安装在2015年5月24-ID-A。在本报告中,提出了基于XRF的XBPM和基于Compton散射的XBPM的设计和测试结果。还讨论了与下一代XBPMS开发的持续研究,在两个固体之间接头的热接触电阻上。

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