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Chemically induced Jahn-Teller ordering on manganite surfaces

机译:锰表面上化学诱导的Jahn-Teller有序

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Physical and electrochemical phenomena at the surfaces of transition metal oxides and their coupling to local functionality remains one of the enigmas of condensed matter physics. Understanding the emergent physical phenomena at surfaces requires the capability to probe the local composition, map order parameter fields and establish their coupling to electronic properties. Here we demonstrate that measuring the sub-30-pm displacements of atoms from high-symmetry positions in the atomically resolved scanning tunnelling microscopy allows the physical order parameter fields to be visualized in real space on the single-atom level. Here, this local crystallographic analysis is applied to the in-situ-grown manganite surfaces. In particular, using direct bond-angle mapping we report direct observation of structural domains on manganite surfaces, and trace their origin to surface-chemistry-induced stabilization of ordered Jahn-Teller displacements. Density functional calculations provide insight into the intriguing interplay between the various degrees of freedom now resolved on the atomic level.RI Gai, Zheng/B-5327-2012OI Gai, Zheng/0000-0002-6099-4559
机译:过渡金属氧化物表面的物理和电化学现象及其与局部功能的耦合仍然是凝聚态物理的谜团之一。了解表面出现的物理现象需要能够探测局部成分,映射顺序参数字段并建立它们与电子特性的耦合。在这里,我们证明了在原子分辨扫描隧道显微镜中测量高对称位置的原子在30 pm以下的位移,可以在单个原子级的真实空间中可视化物理阶数参数字段。在这里,这种局部晶体学分析被应用于原位生长的锰矿表面。特别是,使用直接键角映射,我们报告了对锰矿表面上结构域的直接观察,并将其起源追溯到表面化学诱导的有序Jahn-Teller位移的稳定化。密度泛函计算可洞悉现在在原子水平上解决的各个自由度之间的有趣相互作用.RI Gai Zheng / B-5327-2012OI Gai Zheng / 0000-0002-6099-4559

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