Sun Tao, Fezzaa Kamel
X-ray Science Division, Advanced Photon Source, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439, USA.
J Synchrotron Radiat. 2016 Jul;23(Pt 4):1046-53. doi: 10.1107/S1600577516005804. Epub 2016 Jun 17.
A high-speed X-ray diffraction technique was recently developed at the 32-ID-B beamline of the Advanced Photon Source for studying highly dynamic, yet non-repeatable and irreversible, materials processes. In experiments, the microstructure evolution in a single material event is probed by recording a series of diffraction patterns with extremely short exposure time and high frame rate. Owing to the limited flux in a short pulse and the polychromatic nature of the incident X-rays, analysis of the diffraction data is challenging. Here, HiSPoD, a stand-alone Matlab-based software for analyzing the polychromatic X-ray diffraction data from polycrystalline samples, is described. With HiSPoD, researchers are able to perform diffraction peak indexing, extraction of one-dimensional intensity profiles by integrating a two-dimensional diffraction pattern, and, more importantly, quantitative numerical simulations to obtain precise sample structure information.
最近,先进光子源的32-ID-B光束线开发了一种高速X射线衍射技术,用于研究高度动态、不可重复且不可逆的材料过程。在实验中,通过以极短的曝光时间和高帧率记录一系列衍射图案,来探测单个材料事件中的微观结构演变。由于短脉冲中的通量有限以及入射X射线的多色性,衍射数据分析具有挑战性。在此,介绍了HiSPoD,这是一款基于Matlab的独立软件,用于分析多晶样品的多色X射线衍射数据。使用HiSPoD,研究人员能够进行衍射峰索引、通过对二维衍射图案进行积分来提取一维强度分布,更重要的是,能够进行定量数值模拟以获得精确的样品结构信息。