Burdet Nicolas, Shi Xiaowen, Parks Daniel, Clark Jesse N, Huang Xiaojing, Kevan Stephen D, Robinson Ian K
Opt Express. 2015 Mar 9;23(5):5452-67. doi: 10.1364/OE.23.005452.
Coherent X-ray Diffraction Imaging (CDI) and X-ray ptychography both heavily rely on the high degree of spatial coherence of the X-ray illumination for sufficient experimental data quality for reconstruction convergence. Nevertheless, the majority of the available synchrotron undulator sources have a limited degree of partial coherence, leading to reduced data quality and a lower speckle contrast in the coherent diffraction patterns. It is still an open question whether experimentalists should compromise the coherence properties of an X-ray source in exchange for a higher flux density at a sample, especially when some materials of scientific interest are relatively weak scatterers. A previous study has suggested that in CDI, the best strategy for the study of strong phase objects is to maintain a high degree of coherence of the illuminating X-rays because of the broadening of solution space resulting from the strong phase structures. In this article, we demonstrate the first systematic analysis of the effectiveness of partial coherence correction in ptychography as a function of the coherence properties, degree of complexity of illumination (degree of phase diversity of the probe) and sample phase complexity. We have also performed analysis of how well ptychographic algorithms refine X-ray probe and complex coherence functions when those variables are unknown at the start of reconstructions, for noise-free simulated data, in the case of both real-valued and highly-complex objects.
相干X射线衍射成像(CDI)和X射线叠层成像都严重依赖于X射线照明的高度空间相干性,以获得足够的实验数据质量来实现重建收敛。然而,大多数现有的同步加速器波荡器源具有有限程度的部分相干性,导致数据质量下降,相干衍射图案中的散斑对比度降低。实验人员是否应该以牺牲X射线源的相干特性为代价,换取样品处更高的通量密度,这仍然是一个悬而未决的问题,特别是当一些具有科学研究价值的材料是相对较弱的散射体时。先前的一项研究表明,在CDI中,对于强相位物体的研究,最佳策略是保持照明X射线的高度相干性,因为强相位结构会导致解空间变宽。在本文中,我们首次系统分析了叠层成像中部分相干校正的有效性,该有效性是相干特性、照明复杂程度(探针的相位多样性程度)和样品相位复杂性的函数。对于无噪声的模拟数据,在实值物体和高度复杂物体的情况下,我们还分析了在重建开始时这些变量未知时,叠层成像算法对X射线探针和复相干函数的细化程度。