Synchrotron radiation techniques and their application to actinide materials

IF 45.9 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Reviews of Modern Physics Pub Date : 2022-11-04 DOI:10.1103/RevModPhys.95.015001
R. Caciuffo, G. Lander, G. van der Laan
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引用次数: 1

Abstract

Research on actinide materials, both basic and applied, has been greatly advanced by the general techniques available from high-intensity photon beams from x-ray synchrotron sources. The most important single reason is that such x-ray sources can work with minute (e.g., microgram) samples, and at this level, the radioactive hazards of actinides are much reduced. We start by discussing the form and encapsulation procedures used for different techniques, then discuss the basic theory for interpreting the results. By reviewing a selection of x-ray diffraction (XRD), resonant elastic x-ray scattering (REXS), x-ray magnetic circular dichroism (XMCD), resonant and non-resonant inelastic scattering (RIXS, NIXS), dispersive inelastic x-ray scattering (IXS), and conventional and resonant photoemission experiments, we demonstrate the potential of synchrotron radiation techniques in studying lattice and electronic structure, hybridization effects, multipolar order, and lattice dynamics in actinide materials.

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同步辐射技术及其在锕系物质中的应用
x射线同步辐射源高强度光子束的通用技术极大地推动了锕系元素材料的基础和应用研究。最重要的一个原因是,这种x射线源可以处理微小(如微克)的样本,在这个水平上,锕系元素的放射性危害大大降低。我们首先讨论不同技术使用的形式和封装程序,然后讨论解释结果的基本理论。通过回顾x射线衍射(XRD)、共振弹性x射线散射(REXS)、x射线磁圆二向色性(XMCD)、共振和非共振非弹性散射(RIXS,NIXS),色散非弹性x射线辐射(IXS)以及常规和共振光电发射实验的选择,我们展示了同步辐射技术在研究锕系材料的晶格和电子结构、杂化效应、多极序和晶格动力学方面的潜力。
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来源期刊
Reviews of Modern Physics
Reviews of Modern Physics 物理-物理:综合
CiteScore
76.20
自引率
0.70%
发文量
30
期刊介绍: Reviews of Modern Physics (RMP) stands as the world's foremost physics review journal and is the most extensively cited publication within the Physical Review collection. Authored by leading international researchers, RMP's comprehensive essays offer exceptional coverage of a topic, providing context and background for contemporary research trends. Since 1929, RMP has served as an unparalleled platform for authoritative review papers across all physics domains. The journal publishes two types of essays: Reviews and Colloquia. Review articles deliver the present state of a given topic, including historical context, a critical synthesis of research progress, and a summary of potential future developments.
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