Vartanyants I A, Robinson I K, McNulty I, David C, Wochner P, Tschentscher Th
HASYLAB at DESY, Notkestrasse 85, 22607 Hamburg, Germany.
J Synchrotron Radiat. 2007 Nov;14(Pt 6):453-70. doi: 10.1107/S0909049507037600. Epub 2007 Oct 13.
Coherent X-ray diffraction imaging is a rapidly advancing form of lensless microscopy. The phase information of the diffraction pattern is embedded in a sufficiently sampled coherent diffraction pattern. Using advanced computational methods, this diffraction pattern can be inverted to produce an image of a sample with diffraction-limited resolution. It is attractive to use high-power coherent X-ray beams produced by future X-ray free-electron lasers for imaging nanoscale condensed matter, materials and biological samples. Here, the scientific case, requirements and the possible realisation of the coherent X-ray diffraction imaging beamlines at the European XFEL Facility are presented.
相干X射线衍射成像(Coherent X-ray diffraction imaging)是一种快速发展的无透镜显微镜技术。衍射图样的相位信息被嵌入到充分采样的相干衍射图样中。利用先进的计算方法,可以对该衍射图样进行逆变换,以产生具有衍射极限分辨率的样品图像。利用未来X射线自由电子激光产生的高功率相干X射线束对纳米级凝聚态物质、材料和生物样品进行成像很有吸引力。本文介绍了欧洲X射线自由电子激光装置(European XFEL Facility)相干X射线衍射成像光束线的科学依据、要求及可能的实现方式。