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Enhanced magnetism in lightly doped manganite heterostructures: strain or stoichiometry?

机译:增强磁性的轻掺杂水锰矿异质结构:应变或化学计量学吗?

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摘要

Lattice mismatch induced epitaxial strain has been widely used to tune functional properties in complex oxide heterostructures. Apart from the epitaxial strain, a large lattice mismatch also produces other effects including modulations in microstructure and stoichiometry. However, it is challenging to distinguish the impact of these effects from the strain contribution to thin film properties. Here, we use La0.9Sr0.1MnO3 (LSMO), a lightly doped manganite close to the vertical phase boundary, as a model system to demonstrate that both epitaxial strain and cation stoichiometry induced by strain relaxation contribute to functionality tuning. The thinner LSMO films are metallic with a greatly enhanced T-C which is 97 K higher than the bulk value. Such anomalies in T-C and transport cannot be fully explained by the epitaxial strain alone. Detailed microstructure analysis indicates La deficiency in thinner films and twin domain formation in thicker films. Our results have revealed that both epitaxial strain and strain relaxation induced stoichiometry/microstructure modulations contribute to the modified functional properties in lightly doped manganite perovskite thin films.
机译:晶格失配引起的外延应变广泛用于调优功能属性复杂氧化物异质结构。外延应变,一个大的晶格不匹配包括调节产生其他影响微观结构和化学计量学。具有挑战性的区分这些的影响从应变对薄膜的影响属性。轻掺杂水锰矿接近垂直相界面,作为一个模型系统演示外延应变和阳离子化学计量学应变弛豫引起的有助于优化功能。LSMO薄膜金属有大大增强97 K温度系数高于大部分价值。这种异常温度系数和运输不能完全解释为外延应变。详细的微观结构分析表明La缺乏薄电影和双域形成较厚的电影。透露,外延应变和应变松弛诱导化学计量/微观结构调节导致修改的功能属性轻掺杂亚锰酸盐钙钛矿薄膜。

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