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Fluorescence detection of white-beam X-ray absorption anisotropy: towards element-sensitive projections of local atomic structure

机译:白光束X射线吸收各向异性的荧光检测:朝向局部原子结构的元素敏感投影

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摘要

Projections of the atomic structure around Nb atoms in a LiNbO3 single crystal were obtained from a white-beam X-ray absorption anisotropy (XAA) pattern detected using Nb K fluorescence. This kind of anisotropy results from the interference of X-rays inside a sample and, owing to the short coherence length of a white beam, is visible only at small angles around interatomic directions. Consequently, the main features of the recorded XAA corresponded to distorted real-space projections of dense-packed atomic planes and atomic rows. A quantitative analysis of XAA was carried out using a wavelet transform and allowed well resolved projections of Nb atoms to be obtained up to distances of 10 Å. The signal of nearest O atoms was detected indirectly by a comparison with model calculations. The measurement of white-beam XAA using characteristic radiation indicates the possibility of obtaining element-sensitive projections of the local atomic structure in more complex samples.
机译:LiNbO3单晶中Nb原子周围原子结构的投影是从使用Nb K荧光检测到的白光束X射线吸收各向异性(XAA)模式获得的。这种各向异性是由样品内部X射线的干扰引起的,并且由于白光束的相干长度较短,因此只能在原子间方向周围的小角度看到。因此,所记录的XAA的主要特征对应于密集堆积的原子平面和原子行的真实空间投影。使用小波变换对XAA进行了定量分析,并获得了分辨良好的Nb原子投影,直至距离10Å。通过与模型计算进行比较,间接检测到最接近的O原子的信号。使用特征辐射对白光束XAA进行测量表明,可以在更复杂的样品中获得局部原子结构的元素敏感投影。

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