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X射线拉曼/发射光谱仪中的圆柱形弯曲劳厄分析仪:性能测试及与球形弯曲布拉格分析仪的比较

Cylindrically bent Laue analyzer in an X-ray Raman/emission spectrometer: performance tests and a comparison with spherically bent Bragg analyzers.

作者信息

Hiraoka Nozomu

机构信息

National Synchrotron Radiation Research Center, Hsinchu 30076, Taiwan.

出版信息

J Synchrotron Radiat. 2025 Jan 1;32(Pt 1):109-117. doi: 10.1107/S1600577524010634.

Abstract

The performances of a spherically bent Bragg analyzer and a cylindrically bent Laue analyzer in an X-ray Raman/emission spectrometer are compared. The reflectivity and energy resolution are evaluated from the intensity of the elastic scattering and the width of the energy distribution on a SiO glass sample. Widely used, Bragg analyzers display excellent performance at the photon energy E ≤ 10 keV. However, at higher E, the reflectivity and the resolution gradually deteriorate as E increases, showing poor performance above 20 keV. On the other hand, the reflectivity of the Laue analyzer gradually increases at E > 10 keV, displaying excellent reflectivity and good resolution around 20 keV. The Laue analyzer is suitable for X-ray absorption spectroscopy in high-energy-resolution fluorescence-detection mode or X-ray emission spectroscopy on 4d transition metal compounds. Furthermore, the X-ray Raman features of the lithium K-edge in LiF and the oxygen K-edge feature in HO, measured by nine Bragg analyzers (2 m radius) at E ≃ 9.9 keV and by five Laue analyzers (1.4 m radius) at E ≃ 19.5 keV, have been compared. Similar count rates and resolutions are observed.

摘要

比较了球形弯曲布拉格分析仪和圆柱形弯曲劳厄分析仪在X射线拉曼/发射光谱仪中的性能。通过SiO玻璃样品上弹性散射的强度和能量分布宽度来评估反射率和能量分辨率。布拉格分析仪应用广泛,在光子能量E≤10 keV时表现出优异的性能。然而,在较高的E时,反射率和分辨率随着E的增加而逐渐恶化,在20 keV以上表现不佳。另一方面,劳厄分析仪的反射率在E>10 keV时逐渐增加,在20 keV左右显示出优异的反射率和良好的分辨率。劳厄分析仪适用于高能分辨率荧光检测模式下的X射线吸收光谱或4d过渡金属化合物的X射线发射光谱。此外,还比较了在E≃9.9 keV时用九个布拉格分析仪(半径2 m)测量的LiF中锂K边的X射线拉曼特征和在E≃19.5 keV时用五个劳厄分析仪(半径1.4 m)测量的HO中氧K边特征。观察到了相似的计数率和分辨率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0707/11708860/327622534d77/s-32-00109-fig1.jpg

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