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Emerging Diluted Ferromagnetism in High- T c Superconductors Driven by Point Defect Clusters

机译:点缺陷簇驱动的高T c超导体中的新兴稀释铁磁性

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Abstract Defects in ceramic materials are generally seen as detrimental to their functionality and applicability. Yet, in some complex oxides, defects present an opportunity to enhance some of their properties or even lead to the discovery of exciting physics, particularly in the presence of strong correlations. A paradigmatic case is the high-temperature superconductor YBa 2 Cu 3 O 7-???′ (Y123), in which nanoscale defects play an important role as they can immobilize quantized magnetic flux vortices. Here previously unforeseen point defects buried in Y123 thin films that lead to the formation of ferromagnetic clusters embedded within the superconductor are unveiled. Aberration-corrected scanning transmission microscopy has been used for exploring, on a single unit-cell level, the structure and chemistry resulting from these complex point defects, along with density functional theory calculations, for providing new insights about their nature including an unexpected defect-driven ferromagnetism, and X-ray magnetic circular dichroism for bearing evidence of Cu magnetic moments that align ferromagnetically even below the superconducting critical temperature to form a dilute system of magnetic clusters associated with the point defects.
机译:摘要陶瓷材料中的缺陷通常被认为对其功能和适用性有害。但是,在某些复杂的氧化物中,缺陷提供了增强其某些性能甚至甚至导致发现令人兴奋的物理学的机会,特别是在存在强相关性的情况下。一个典型的例子是高温超导体YBa 2 Cu 3 O 7-???'(Y123),其中纳米级缺陷起着重要的作用,因为它们可以固定量化的磁通量涡旋。在此揭示了掩埋在Y123薄膜中的先前无法预料的点缺陷,这些缺陷导致形成嵌入超导体内的铁磁团簇。像差校正扫描透射显微镜已用于在单个晶胞水平上探索由这些复杂点缺陷产生的结构和化学性质,以及密度泛函理论计算,以提供有关其性质的新见解,包括意外缺陷。驱动铁磁性和X射线磁性圆二色性,以证明Cu磁矩即使在超导临界温度以下也能铁磁性排列,从而形成与点缺陷相关的磁团簇稀体系。

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