超亮电子束横向剖面成像仪

R. Ischebeck, E. Prat, V. Thominet, C. O. Loch
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引用次数: 27

摘要

本文提出了一种用于超亮电子束的横向剖面成像仪,该成像仪通过观察闪烁晶体中的舍姆普flug成像条件和斯涅尔-笛卡儿折射定律,克服了现有设计中的分辨率问题。晶体表面高度压缩的电子束发出的相干光学跃迁辐射被引导远离相机,允许使用监视器进行适用于x射线自由电子激光器的电子束的剖面测量。通过光线追踪模拟验证了光学设计,并通过实验验证了分辨率的角依赖性。根据所提出的设计原理,在瑞士自由电子激光器的喷射器测试装置中使用了一种仪器,并对不同的闪烁体材料进行了测试。结合横向偏转射频结构和四极磁体阵列的测量表明,在脉冲长度为10 ps和粒子能量为230 MeV的30 fC电子束的核心中,标准化切片发射率为25 nm。
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Transverse profile imager for ultrabright electron beams
A transverse profile imager for ultrabright electron beams is presented, which overcomes resolution issues in present designs by observing the Scheimpflug imaging condition as well as the Snell-Descartes law of refraction in the scintillating crystal. Coherent optical transition radiation emitted by highly compressed electron bunches on the surface of the crystal is directed away from the camera, allowing to use the monitor for profile measurements of electron bunches suitable for X-ray free electron lasers. The optical design has been verified by ray tracing simulations, and the angular dependency of the resolution has been verified experimentally. An instrument according to the presented design principles has been used in the SwissFEL Injector Test Facility, and different scintillator materials have been tested. Measurements in conjunction with a transverse deflecting radiofrequency structure and an array of quadrupole magnets demonstrate a normalized slice emittance of 25 nm in the core of a 30 fC electron beam at a pulse length of 10 ps and a particle energy of 230 MeV.
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期刊介绍: Physical Review Special Topics - Accelerators and Beams (PRST-AB), is a peer reviewed, purely electronic journal, distributed without charge to readers and funded by contributions from national laboratories. It covers the full range of accelerator science and technology: subsystem and component technologies, beam dynamics; accelerator applications; and design, operation, and improvement of accelerators used in science and industry. This includes accelerators for high-energy and nuclear physics, synchrotron radiation production, spallation neutron sources, medical therapy, and intense beam applications.
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