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Pulse-resolved intensity measurements at a hard X-ray FEL using semi-transparent diamond detectors

机译:使用半透明钻石探测器的硬X射线FEL处的脉冲分辨强度测量

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摘要

Solid-state ionization chambers are presented based on thin diamond crystals that allow pulse-resolved intensity measurements at a hard X-ray free-electron laser (FEL), up to the 4.5 MHz repetition rate that will become available at the European XFEL. Due to the small X-ray absorption of diamond the thin detectors are semi-transparent which eases their use as non-invasive monitoring devices in the beam. FELs are characterized by strong pulse-to-pulse intensity fluctuations due to the self-amplified spontaneous emission (SASE) process and in many experiments it is mandatory to monitor the intensity of each individual pulse. Two diamond detectors with different electrode materials, beryllium and graphite, were tested as intensity monitors at the XCS endstation of the Linac Coherent Light Source (LCLS) using the pink SASE beam at 9 keV. The performance is compared with LCLS standard monitors that detect X-rays backscattered from thin SiN foils placed in the beam. The graphite detector can also be used as a beam position monitor although with rather coarse resolution.
机译:基于薄金刚石晶体呈现固态电离室,其允许在硬X射线自由电子激光器(FEL)处脉冲分辨强度测量,直至欧洲Xfel可用的4.5 MHz重复速率。由于金刚石的小X射线吸收,薄探测器是半透明的,其在光束中减轻它们用作非侵入式监测装置。由于自增强的自发发射(SASE)过程,并且在许多实验中,FEL的特征在于强大的脉冲脉冲强度波动,并且必须监测每个单独脉冲的强度。使用粉红色SASE梁在9keV的粉红色SASE梁的XCS封端的XCS终点上测试了具有不同电极材料,铍和石墨的金刚石探测器作为强度监测器。将性能与LCLS标准显示器进行比较,该标准显示器检测从放置在梁中的薄SIN箔背散射的X射线。石墨检测器也可以用作光束位置监视器,尽管具有相当粗略的分辨率。

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