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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Substrates with a periodic surface structure in grazing-exit X-ray microanalysis
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Substrates with a periodic surface structure in grazing-exit X-ray microanalysis

机译:X射线放牧分析中具有周期性表面结构的基质

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The angular distribution of X-ray radiation from a point source and a small particle situated near a substrate with a periodic (diffraction grating-like) surface structure is analyzed theoretically. Due to diffraction on the surface grating, the radiation, reflected from the substrate, can be concentrated near certain directions depending on the wavelength and the grating parameters. As a result, distinct peaks appear in the X-ray signal angular dependence, whose magnitude, depending on the detector angle resolution, can exceed several times the usual value of X-ray intensity available under the same conditions of excitation with the use of a flat substrate. Different substrate structures containing amplitude as well as phase gratings with rectangular, triangular or smooth (sinusoidal) grooves are numerically investigated, predominantly for the case of low-energy characteristic X-ray radiation (O, N and C Kalpha lines), and the most favorable groove shapes and grating periods are revealed. The proposed method of X-ray signal enhancement is expected to be especially useful if the primary emission is relatively weak, i.e. for trace analysis, small specimens and/or analysis of low-Z elements. The angular separation of peaks for different elements forms an additional analytical advantage. The prospects for experimental realization of the method and possible further developments are discussed. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 34]
机译:理论上分析了来自点源和位于具有周期性(衍射光栅状)表面结构的基板附近的小颗粒的X射线辐射的角度分布。由于表面光栅上的衍射,从基板反射的辐射可以集中在某些方向附近,具体取决于波长和光栅参数。结果,在X射线信号角度依赖性中出现了明显的峰,根据探测器角度分辨率,其大小可能超过在相同激发条件下使用X射线强度可获得的X射线强度通常值的几倍。平面基板。对包含振幅的不同基板结构以及具有矩形,三角形或光滑(正弦)凹槽的相位光栅进行了数值研究,主要针对低能量特征X射线辐射(O,N和C Kalpha线),揭示了有利的凹槽形状和光栅周期。如果一次发射相对较弱,即用于痕量分析,小样本和/或低Z元素分析,则预期所提出的X射线信号增强方法特别有用。不同元素的峰的角度分离形成了额外的分析优势。讨论了该方法的实验实现前景以及可能的进一步发展。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:34]

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