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首页> 外文期刊>Journal of optics >Design of the mirror optical systems for coherent diffractive imaging at the SPB/SFX instrument of the European XFEL
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Design of the mirror optical systems for coherent diffractive imaging at the SPB/SFX instrument of the European XFEL

机译:欧洲XFEL的SPB / SFX仪器用于相干衍射成像的反射镜光学系统的设计

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摘要

The high degree of spatial coherence and extreme pulse energies available at x-ray free electron laser (XFEL) sources naturally support coherent diffractive imaging applications. In order to optimally exploit these unique properties, the optical systems at XFELs must be highly transmissive, focus to appropriate sizes matched to the scale of samples to be investigated and must minimally perturb the wavefront of the XFEL beam. We present the design and simulated performance of two state-of-the-art Kirkpatrik-Baez mirror systems that form the primary foci of the single particles, clusters and biomolecules and serial femtosecond crystallography (SPB/SFX) instrument of the European XFEL. The two systems, presently under construction, will produce 1 mu m and 100 nm scale foci across a 3-16 keV photon energy range. Targeted applications include coherent imaging of weakly scattering, often biological, specimens.
机译:X射线自由电子激光(XFEL)光源可提供的高度空间相干性和极端脉冲能量自然支持相干衍射成像应用。为了最佳地利用这些独特的特性,XFEL处的光学系统必须具有高透射率,聚焦于与要研究的样本规模相匹配的合适尺寸,并且必须最小化XFEL光束的波前。我们介绍了两个最先进的Kirkpatrik-Baez反射镜系统的设计和模拟性能,它们构成了欧洲XFEL的单个粒子,团簇和生物分子以及系列飞秒晶体学(SPB / SFX)仪器的主要焦点。目前正在建设中的这两个系统将在3-16 keV光子能量范围内产生1微米和100纳米尺度的焦点。目标应用包括对弱散射(通常为生物)样本的相干成像。

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