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首页> 外文期刊>Acta crystallographica. Section A, Foundations and advances. >Multiwavelength anomalous X-ray diffraction for combined imaging of atomic displacement and strain
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Multiwavelength anomalous X-ray diffraction for combined imaging of atomic displacement and strain

机译:多波长反常x射线衍射结合原子位移和成像应变

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摘要

The X-ray Bragg coherent diffractive imaging (CDI) technique assumes that the structure factor holds constant over the measured crystal. This approximation breaks down for materials exhibiting variations in the unit-cell configuration, such as piezo- and ferroelectrics. In that case, the strain field cannot be reliably determined from the reconstruction because the lattice deformation and the structure factor contribute concomitantly. Proposed here is a solution to this problem achieved by combining Bragg CDI and the multiwavelength anomalous diffraction approach that measures a Friedel pair of reflections at two different photon energies near an absorption edge. Comparing the obtained reconstructions with a parametric model that includes calculating the scattering amplitude as a function of wavelength and the unit-cell configuration, the contributions of the lattice deformation and the structure factor are separated. Simulations of the ferroelectric material BaTiO3 demonstrate the possibility of simultaneous probing of the strain and displacement of the Ti atoms. The proposed method opens up an opportunity to apply coherent X-ray diffraction for nanoscaleresolved 3D mapping of polarization domains in micro- and nanocrystals.
机译:布拉格x射线相干衍射成像(CDI)技术假定结构因子在测量晶体常数。近似分解为材料参展单位晶格的变化配置,比如压电和铁电体。在这种情况下,不能可靠地应变场从重建,因为决定晶格变形和结构的因素与此同时作出贡献。解决这个问题通过结合而实现的布拉格CDI和多波长反常弗里德对衍射的方法措施反映在两个不同的光子能量一个吸收边附近。重构参数模型包括计算散射振幅波长的函数和单胞配置,晶格的贡献变形和结构因子分离。钛酸钡材料证明的可能性同时应变和探索钛原子的位移。打开应用一致的x射线的机会衍射nanoscaleresolved 3 d的映射在微观和纳米晶体极化域。

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