A high resolution and large solid angle x-ray Raman spectroscopy end-station at the Stanford Synchrotron Radiation Lightsource.

IF 1.7 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Review of Scientific Instruments Pub Date : 2012-04-01 DOI:10.1063/1.4704458
D Sokaras, D Nordlund, T-C Weng, R Alonso Mori, P Velikov, D Wenger, A Garachtchenko, M George, V Borzenets, B Johnson, Q Qian, T Rabedeau, U Bergmann
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Abstract

We present a new x-ray Raman spectroscopy end-station recently developed, installed, and operated at the Stanford Synchrotron Radiation Lightsource. The end-station is located at wiggler beamline 6-2 equipped with two monochromators-Si(111) and Si(311) as well as collimating and focusing optics. It consists of two multi-crystal Johann type spectrometers arranged on intersecting Rowland circles of 1 m diameter. The first one, positioned at the forward scattering angles (low-q), consists of 40 spherically bent and diced Si(110) crystals with 100 mm diameters providing about 1.9% of 4π sr solid angle of detection. When operated in the (440) order in combination with the Si (311) monochromator, an overall energy resolution of 270 meV is obtained at 6462.20 eV. The second spectrometer, consisting of 14 spherically bent Si(110) crystal analyzers (not diced), is positioned at the backward scattering angles (high-q) enabling the study of non-dipole transitions. The solid angle of this spectrometer is about 0.9% of 4π sr, with a combined energy resolution of 600 meV using the Si (311) monochromator. These features exceed the specifications of currently existing relevant instrumentation, opening new opportunities for the routine application of this photon-in/photon-out hard x-ray technique to emerging research in multidisciplinary scientific fields, such as energy-related sciences, material sciences, physical chemistry, etc.

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斯坦福同步辐射光源的高分辨率和大固角 X 射线拉曼光谱终端站。
我们介绍了斯坦福同步辐射光源最近开发、安装和运行的新型 X 射线拉曼光谱终端站。该终端站位于摇摆光束线 6-2,配备了两个单色仪--硅(111)和硅(311)以及准直和聚焦光学器件。它由两个多晶体约翰型光谱仪组成,布置在直径为 1 米的相交罗兰圆上。第一台位于前向散射角(低q)处,由 40 个直径为 100 毫米的球形弯曲和切割硅(110)晶体组成,可提供约 1.9% 的 4π sr 实心探测角。当与 Si(311)单色器一起以(440)阶运行时,在 6462.20 eV 处可获得 270 meV 的整体能量分辨率。第二台光谱仪由 14 个球形弯曲的 Si(110)晶体分析器(未切割)组成,位于后向散射角(高q)处,可以研究非偶极子跃迁。该光谱仪的固角约为 4π sr 的 0.9%,使用硅(311)单色器的综合能量分辨率为 600 meV。这些特点超出了现有相关仪器的规格,为将这种光子进/光子出硬 X 射线技术常规应用于能源科学、材料科学、物理化学等多学科科学领域的新兴研究带来了新的机遇。
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来源期刊
Review of Scientific Instruments
Review of Scientific Instruments 工程技术-物理:应用
CiteScore
3.00
自引率
12.50%
发文量
758
审稿时长
2.6 months
期刊介绍: Review of Scientific Instruments, is committed to the publication of advances in scientific instruments, apparatuses, and techniques. RSI seeks to meet the needs of engineers and scientists in physics, chemistry, and the life sciences.
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