Central Analytical Research Facility, Queensland University of Technology, Brisbane, Queensland 4000, Australia.
Department of Chemistry and Physics, La Trobe Institute for Molecular Science, La Trobe University, Bundoora, Victoria 3086, Australia.
J Synchrotron Radiat. 2022 Mar 1;29(Pt 2):480-487. doi: 10.1107/S1600577521012856. Epub 2022 Jan 17.
Over the last decade ptychography has progressed rapidly from a specialist ultramicroscopy technique into a mature method accessible to non-expert users. However, to improve scientific value ptychography data must reconstruct reliably, with high image quality and at no cost to other correlative methods. Presented here is the implementation of high-speed ptychography used at the Australian Synchrotron on the XFM beamline, which includes a free-run data collection mode where dead time is eliminated and the scan time is optimized. It is shown that free-run data collection is viable for fast and high-quality ptychography by demonstrating extremely high data rate acquisition covering areas up to 352 000 µm at up to 140 µm s, with 13× spatial resolution enhancement compared with the beam size. With these improvements, ptychography at velocities up to 250 µm s is approaching speeds compatible with fast-scanning X-ray fluorescence microscopy. The combination of these methods provides morphological context for elemental and chemical information, enabling unique scientific outcomes.
在过去的十年中,相衬成像技术已经从一种专业的超微成像技术快速发展成为一种成熟的方法,可供非专业用户使用。然而,为了提高科学价值,相衬成像数据必须可靠地重建,具有高质量的图像,并且不会对其他相关方法造成任何影响。本文介绍了澳大利亚同步加速器 XFM 光束线上高速相衬成像的实现,其中包括一种自由运行的数据采集模式,在该模式下消除了死时间,并优化了扫描时间。通过演示高达 140 µm/s 的速度和高达 352 000 µm 的大区域的极高数据速率采集,实现了 13 倍的空间分辨率增强,与光束尺寸相比,证明了自由运行数据采集对于快速和高质量的相衬成像是可行的。通过这些改进,速度高达 250 µm/s 的相衬成像接近与快速扫描 X 射线荧光显微镜兼容的速度。这些方法的结合为元素和化学信息提供了形态学背景,从而实现了独特的科学成果。