Kharitonov Konstantin, Mehrjoo Masoud, Ruiz-Lopez Mabel, Keitel Barbara, Kreis Svea, Gang Seung-Gi, Pan Rui, Marras Alessandro, Correa Jonathan, Wunderer Cornelia B, Plönjes Elke
Deutsches Elektronen-Synchrotron DESY, Hamburg, Germany.
Center for Free-Electron Laser Science CFEL, Deutsches Elektronen-Synchrotron DESY, Hamburg, Germany.
Sci Rep. 2022 Aug 24;12(1):14430. doi: 10.1038/s41598-022-18605-x.
In this work, single-shot ptychography was adapted to the XUV range and, as a proof of concept, performed at the free-electron laser FLASH at DESY to obtain a high-resolution reconstruction of a test sample. Ptychography is a coherent diffraction imaging technique capable of imaging extended samples with diffraction-limited resolution. However, its scanning nature makes ptychography time-consuming and also prevents its application for mapping of dynamical processes. Single-shot ptychography can be realized by collecting the diffraction patterns of multiple overlapping beams in one shot and, in recent years, several concepts based on two con-focal lenses were employed in the visible regime. Unfortunately, this approach cannot be extended straightforwardly to X-ray wavelengths due to the use of refractive optics. Here, a novel single-shot ptychography setup utilizes a combination of X-ray focusing optics with a two-dimensional beam-splitting diffraction grating. It facilitates single-shot imaging of extended samples at X-ray wavelengths.
在这项工作中,单次叠层成像技术被应用于极紫外波段,并且作为概念验证,在德国电子同步加速器研究所(DESY)的自由电子激光FLASH上进行,以获得测试样品的高分辨率重建图像。叠层成像技术是一种相干衍射成像技术,能够以衍射极限分辨率对扩展样品进行成像。然而,其扫描特性使得叠层成像技术耗时较长,并且也阻碍了其在动态过程映射中的应用。单次叠层成像可以通过一次采集多个重叠光束的衍射图样来实现,近年来,在可见光领域采用了几种基于两个共焦透镜的概念。不幸的是,由于使用了折射光学元件,这种方法不能直接扩展到X射线波长。在这里,一种新型的单次叠层成像装置利用了X射线聚焦光学元件与二维分束衍射光栅的组合。它有助于在X射线波长下对扩展样品进行单次成像。