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Observation of superconductivity in structure-selected Ti 2 O 3 thin films

机译:Ti 2 O 3薄膜的超导性观察

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The search for new superconductors capable of carrying loss-free current has been a research theme in condensed matter physics for the past decade. Among superconducting compounds, titanates have not been pursued as much as Cu2+ (3d9) (cuprate) and Fe2+ (3d6) (pnictide) compounds. Particularly, Ti3+-based compounds or electron systems with a special 3d1 filling are thought to be promising candidates as high-TC superconductors, but there has been no report on such pure Ti3+-based superconducting titanates. With the advent of thin-film growth technology, stabilizing new structural phases in single-crystalline thin films is a promising strategy to realize physical properties that are absent in the bulk counterparts. Herein, we report the discovery of unexpected superconductivity in orthorhombic-structured thin films of Ti2O3, a 3d1 electron system, which is in strong contrast to the conventional semiconducting corundum-structured Ti2O3. This is the first report of superconductivity in a titanate with a pure 3d1 electron configuration. Superconductivity at 8uK was observed in the orthorhombic Ti2O3 films. Leveraging the strong structure-property correlation in transition-metal oxides, our discovery introduces a previously unrecognized route for inducing emergent superconductivity in a newly stabilized polymorph phase in epitaxial thin films.
机译:在过去的十年中,寻找能够承载无损耗电流的新型超导体一直是凝聚态物理学的研究主题。在超导化合物中,钛酸盐的追求不及Cu2 +(3d9)(铜酸盐)和Fe2 +(3d6)(肽)化合物。特别是,具有特殊3d1填充物的基于Ti3 +的化合物或电子系统被认为是高TC超导体的有前途的候选者,但是还没有关于这种纯的基于Ti3 +的超导钛酸酯的报道。随着薄膜生长技术的出现,稳定单晶薄膜中的新结构相是实现大批量同类产品所不具备的物理性能的一种有前途的策略。在本文中,我们报道了在正交结构的Ti2O3薄膜(一种3d1电子系统)中发现了意外的超导性,这与常规的半导体刚玉结构的Ti2O3形成了鲜明的对比。这是钛酸酯具有纯3d1电子构型的超导性的首次报道。在正交晶的Ti2O3薄膜中观察到了8uK的超导性。利用过渡金属氧化物中强烈的结构-特性相关性,我们的发现引入了一种以前未被认识的途径,用于在外延薄膜中新稳定的多晶型物相中诱导出超导性。

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