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Towards a practical implementation of X-ray ghost imaging with synchrotron light

机译:利用同步加速器光实现X射线幻影成像的实际实现

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摘要

An experimental procedure for transmission X-ray ghost imaging using synchrotron light is presented. Hard X-rays from an undulator were divided by a beamsplitter to produce two copies of a speckled incident beam. Both beams were simultaneously measured on an indirect pixellated detector and the intensity correlation between the two copies was used to retrieve the ghost image of samples placed in one of the two beams, without measuring the samples directly. Aiming at future practical uses of X-ray ghost imaging, the authors discuss details regarding data acquisition, image reconstruction strategies and measure the point-spread function of the ghost-imaging system. This approach may become relevant for applications of ghost imaging with X-ray sources such as undulators in storage rings, free-electron lasers and lower-coherence laboratory facilities.
机译:提出了使用同步加速器光进行透射X射线重影成像的实验程序。来自波荡器的硬X射线被分束器分开,以产生斑点入射光束的两个副本。在间接像素化检测器上同时测量两个光束,并且使用两个副本之间的强度相关性来获取放置在两个光束之一中的样品的重影图像,而无需直接测量样品。针对X射线幻影成像的未来实际应用,作者讨论了有关数据采集,图像重建策略和测量幻影成像系统的点扩展功能的详细信息。这种方法可能对使用X射线源(例如存储环中的起伏器,自由电子激光器和低相干实验室设备)的重影成像的应用很重要。

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