为同步加速器和 XFEL 光源的 X 射线多投影成像开发晶体光学器件。

IF 2.5 3区 物理与天体物理
Journal of Synchrotron Radiation Pub Date : 2024-11-01 Epub Date: 2024-10-21 DOI:10.1107/S1600577524008488
Valerio Bellucci, Sarlota Birnsteinova, Tokushi Sato, Romain Letrun, Jayanath C P Koliyadu, Chan Kim, Gabriele Giovanetti, Carsten Deiter, Liubov Samoylova, Ilia Petrov, Luis Lopez Morillo, Rita Graceffa, Luigi Adriano, Helge Huelsen, Heiko Kollmann, Thu Nhi Tran Calliste, Dusan Korytar, Zdenko Zaprazny, Andrea Mazzolari, Marco Romagnoni, Eleni Myrto Asimakopoulou, Zisheng Yao, Yuhe Zhang, Jozef Ulicny, Alke Meents, Henry N Chapman, Richard Bean, Adrian Mancuso, Pablo Villanueva-Perez, Patrik Vagovic
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引用次数: 0

摘要

X 射线多投影成像(XMPI)是一种新兴的实验技术,用于获取随机过程的无旋转、时间分辨、体积信息。该技术是为高亮度光源设施开发的,旨在解决最先进的成像方法在获取 4D 样品信息方面的已知局限性,这些局限性与样品旋转的需要有关。XMPI 依靠分束方案,从多个角度间隔的视点照射样品,并采用快速、间接的 X 射线成像探测器收集数据。这种方法可以研究以前无法获得的与工业和社会相关的现象,如固体断裂、冲击波传播、基于激光的三维打印,甚至生物领域的快速过程。在这项工作中,我们将详细讨论 XMPI 的分光方案。更具体地说,我们探讨了在同步辐射插入设备和 XFEL 设备中使用 XMPI 方案的 X 射线分束光学器件的相关特性。此外,我们还介绍了两种不同的 XMPI 方案,其目的是方便大型样品和复杂的样品环境。最后,我们介绍了在欧洲 XFEL 进行 MHz 速率 XMPI 的可行性实验证明。这一详细概述旨在说明 XMPI 所面临的挑战和潜力,并为该技术的未来发展奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of crystal optics for X-ray multi-projection imaging for synchrotron and XFEL sources.

X-ray multi-projection imaging (XMPI) is an emerging experimental technique for the acquisition of rotation-free, time-resolved, volumetric information on stochastic processes. The technique is developed for high-brilliance light-source facilities, aiming to address known limitations of state-of-the-art imaging methods in the acquisition of 4D sample information, linked to their need for sample rotation. XMPI relies on a beam-splitting scheme, that illuminates a sample from multiple, angularly spaced viewpoints, and employs fast, indirect, X-ray imaging detectors for the collection of the data. This approach enables studies of previously inaccessible phenomena of industrial and societal relevance such as fractures in solids, propagation of shock waves, laser-based 3D printing, or even fast processes in the biological domain. In this work, we discuss in detail the beam-splitting scheme of XMPI. More specifically, we explore the relevant properties of X-ray splitter optics for their use in XMPI schemes, both at synchrotron insertion devices and XFEL facilities. Furthermore, we describe two distinct XMPI schemes, designed to faciliate large samples and complex sample environments. Finally, we present experimental proof of the feasibility of MHz-rate XMPI at the European XFEL. This detailed overview aims to state the challenges and the potential of XMPI and act as a stepping stone for future development of the technique.

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来源期刊
Journal of Synchrotron Radiation
Journal of Synchrotron Radiation INSTRUMENTS & INSTRUMENTATIONOPTICS&-OPTICS
CiteScore
5.60
自引率
12.00%
发文量
289
审稿时长
1 months
期刊介绍: Synchrotron radiation research is rapidly expanding with many new sources of radiation being created globally. Synchrotron radiation plays a leading role in pure science and in emerging technologies. The Journal of Synchrotron Radiation provides comprehensive coverage of the entire field of synchrotron radiation and free-electron laser research including instrumentation, theory, computing and scientific applications in areas such as biology, nanoscience and materials science. Rapid publication ensures an up-to-date information resource for scientists and engineers in the field.
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