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首页> 外文期刊>Ultramicroscopy >Subtleties in ADF imaging and spatially resolved EELS: A case study of low-angle twist boundaries in SrTiO_3
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Subtleties in ADF imaging and spatially resolved EELS: A case study of low-angle twist boundaries in SrTiO_3

机译:ADF成像中的细微之处和空间分辨的EELS:以SrTiO_3中的低角度扭曲边界为例

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A screw dislocation network at the low-angle SrTiO_3/Nb:SrTiO_3 twist grain boundary has been analyzed by annular dark field (ADF) imaging and spatially resolved electron energy loss spectroscopy (EELS) in a scanning transmission electron microscope (STEM). The cores of one set of dislocations running parallel to the beam direction appear dark in the ADF STEM images. EELS on the dislocation core reveals a reduced Sr/Ti ratio compared to the bulk suggesting Sr-deficient cores. The second set of dislocations, orthogonal to the latter, is imaged by its strain field using low-angle annular dark field (LAADF) imaging. Multislice image simulations suggest channeling of the electron probe on the atomic columns for small tilts, theta< 1 deg, where the Sr columns act as beam guides. Only for larger tilts is the channeling effect strongly reduced and the fringe contrast approaches the value predicted by a purely incoherent imaging model. Ti-L_(2,3) EELS across the dislocation core shows an asymmetry between the EELS and the ADF signal which cannot be explained by the geometry or beam broadening. This asymmetry might be explained by an effective nonlocal potential representing inelastic scattering in EELS.
机译:利用环形暗场(ADF)成像和空间分辨电子能量损失谱(EELS)在扫描透射电子显微镜(STEM)中分析了低角度SrTiO_3 / Nb:SrTiO_3扭曲晶粒边界处的螺丝位错网络。一组与射线方向平行的位错的核心在ADF STEM图像中显得较暗。与大量表明存在Sr缺陷的堆芯相比,位错堆芯上的EELS揭示了降低的Sr / Ti比。与第二组位错正交的第二组位错通过其应变场使用低角度环形暗场(LAADF)成像进行成像。多层图像模拟表明,电子探针在原子柱上的通道倾斜小,θ<1度,其中Sr柱充当束向导。仅对于较大的倾斜,通道效应会大大降低,并且条纹对比度接近纯非相干成像模型预测的值。跨位错核心的Ti-L_(2,3)EELS显示EELS和ADF信号之间存在不对称性,无法用几何形状或光束展宽来解释。这种不对称性可以通过代表EELS中非弹性散射的有效非局部电位来解释。

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