Ditter Alexander S, Holden William M, Cary Samantha K, Mocko Veronika, Latimer Matthew J, Nelson Erik J, Kozimor Stosh A, Seidler Gerald T
Department of Physics, University of Washington, PO Box 351650, Seattle, WA 98195-1560, USA.
C-IIAC, Los Alamos National Laboratory, PO Box 1663, Los Alamos, NM 87545, USA.
J Synchrotron Radiat. 2020 Mar 1;27(Pt 2):446-454. doi: 10.1107/S1600577520001022. Epub 2020 Feb 20.
X-ray absorption spectroscopy (XAS) beamlines worldwide are steadily increasing their emphasis on full photon-in/photon-out spectroscopies, such as resonant inelastic X-ray scattering (RIXS), resonant X-ray emission spectroscopy (RXES) and high energy resolution fluorescence detection XAS (HERFD-XAS). In such cases, each beamline must match the choice of emission spectrometer to the scientific mission of its users. Previous work has recently reported a miniature tender X-ray spectrometer using a dispersive Rowland refocusing (DRR) geometry that functions with high energy resolution even with a large X-ray spot size on the sample [Holden et al. (2017). Rev. Sci. Instrum. 88, 073904]. This instrument has been used in the laboratory in multiple studies of non-resonant X-ray emission spectroscopy using a conventional X-ray tube, though only for preliminary measurements at a low-intensity microfocus synchrotron beamline. This paper reports an extensive study of the performance of a miniature DRR spectrometer at an unfocused wiggler beamline, where the incident monochromatic flux allows for resonant studies which are impossible in the laboratory. The results support the broader use of the present design and also suggest that the DRR method with an unfocused beam could have important applications for materials with low radiation damage thresholds and that would not survive analysis on focused beamlines.
全球范围内的X射线吸收光谱(XAS)光束线正日益重视全光子入射/光子出射光谱技术,如共振非弹性X射线散射(RIXS)、共振X射线发射光谱(RXES)和高能量分辨率荧光探测XAS(HERFD-XAS)。在这种情况下,每条光束线都必须根据用户的科学任务来选择合适的发射光谱仪。此前的工作最近报道了一种采用色散罗兰重聚焦(DRR)几何结构的微型软X射线光谱仪,即使在样品上有较大的X射线光斑尺寸时,它也能以高能量分辨率工作[霍尔登等人(2017年)。《科学仪器评论》88, 073904]。该仪器已在实验室中用于多项使用传统X射线管的非共振X射线发射光谱研究,不过仅在低强度微聚焦同步加速器光束线上进行了初步测量。本文报道了在未聚焦摆动器光束线上对微型DRR光谱仪性能的广泛研究,在该光束线上,入射单色通量使得在实验室中无法进行的共振研究成为可能。研究结果支持了当前设计的更广泛应用,同时也表明,对于辐射损伤阈值较低且无法在聚焦光束线上进行分析的材料,采用未聚焦光束的DRR方法可能具有重要应用。