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A nanometre-scale non-periodic structural variation in high temperature superconducting ceramics and the implications for properties

机译:高温超导陶瓷的纳米尺度非周期性结构变化及其对性能的影响

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Non-periodic structural variation has been found in the high T-c cuprates, YBa2Cu3O7-x and Hg0.67Pb0.33Ba2Ca2Cu3O8+delta, by image analysis of high resolution transmission electron microscope (HRTEM) images. We use two methods for analysis of the HRTEM images. The first method is a means for measuring the bending of lattice fringes at twin planes. The second method is a low-pass filter technique which enhances information contained by diffuse-scattered electrons and reveals what appears to be an interference effect between domains of differing lattice parameter in the top and bottom of the thin foil. We believe that these methods of image analysis could be usefully applied to the many thousands of HRTEM images that have been collected by other workers in the high temperature superconductor field. This work provides direct structural evidence for phase separation in high T-c cuprates, and gives support to recent stripes models that have been proposed to explain various angle resolved photoelectron spectroscopy and nuclear magnetic resonance data. We believe that the structural variation is a response to an opening of an electronic solubility gap where holes are not uniformly distributed in the material but are confined to metallic stripes. Optimum doping may occur as a consequence of the diffuse boundaries between stripes which arise from spinodal decomposition. Theoretical ideas about the high T-c cuprates which treat the cuprates as homogeneous may need to be modified in order to take account of this type of structural variation. [References: 69]
机译:通过高分辨率透射电子显微镜(HRTEM)图像的图像分析,在高T-c铜酸盐YBa2Cu3O7-x和Hg0.67Pb0.33Ba2Ca2Cu3O8 +δ中发现了非周期性的结构变化。我们使用两种方法来分析HRTEM图像。第一种方法是用于测量双晶面上晶格条纹弯曲的方法。第二种方法是一种低通滤波器技术,它增强了散射电子所包含的信息,并揭示了薄膜顶部和底部中晶格参数不同的畴之间似乎是干涉效应。我们认为,这些图像分析方法可以有效地应用于高温超导体领域其他工作人员收集的数千幅HRTEM图像。这项工作为高T-c铜酸盐中的相分离提供了直接的结构证据,并为最近提出的条纹模型提供了支持,该条纹模型已被用来解释各种角度分辨的光电子能谱和核磁共振数据。我们认为,结构变化是对电子溶解度间隙打开的响应,在电子溶解度间隙中,孔不是均匀分布在材料中,而是局限于金属条。由于旋节线分解而产生的条纹之间的扩散边界可能会导致最佳掺杂。为了考虑这种类型的结构变化,可能需要修改有关将T-c铜酸盐视为均质的高T-c铜酸盐的理论思想。 [参考:69]

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