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首页> 外文期刊>ACS nano >Direct probe of interplay between local structure and superconductivity in FeTe_(0.55)Se_(0.45)
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Direct probe of interplay between local structure and superconductivity in FeTe_(0.55)Se_(0.45)

机译:FeTe_(0.55)Se_(0.45)中局部结构与超导之间相互作用的直接探究

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摘要

The relationship between atomically defined structures and physical properties in functional materials remains a subject of constant interest. We explore the interplay between local crystallographic structure, composition, and local superconductive properties in iron chalcogenide superconductors. Direct structural analysis of scanning tunneling microscopy data allows local lattice distortions and structural defects across an FeTe_(0.55)Se _(0.45) surface to be explored on a single unit-cell level. Concurrent superconducting gap (SG) mapping reveals suppression of the SG at well-defined structural defects, identified as a local structural distortion. The strong structural distortion causes the vanishing of the superconducting state. This study provides insight into the origins of superconductivity in iron chalcogenides by providing an example of atomic-level studies of the structure-property relationship.
机译:原子定义的结构与功能材料中的物理性质之间的关系仍然是人们一直关注的问题。我们探讨了硫族硫铁超导体中局部晶体结构,组成和局部超导特性之间的相互作用。扫描隧道显微镜数据的直接结构分析允许在单个晶胞水平上探索整个FeTe_(0.55)Se_(0.45)表面的局部晶格畸变和结构缺陷。并发超导间隙(SG)映射揭示了在定义明确的结构缺陷处被抑制的SG,该缺陷被确定为局部结构变形。强烈的结构变形会导致超导状态消失。这项研究通过提供一个原子级的结构-性质关系研究实例,提供了对硫属硫化铁超导电性起​​源的见解。

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