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Achieving ferromagnetic insulating properties in La(0.9)Ba(0.1)MnO(3)thin films through nanoengineering

机译:实现铁磁绝缘属性洛杉矶(0.9)Ba (0.1) MnO(3)薄膜纳米工程

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摘要

Strongly correlated manganites have a wide range of fascinating magnetic and electronic properties, one example being the coexistence of ferromagnetic and insulating properties in lightly-doped bulk. However, it is difficult to translate bulk properties to films. Here, this problem is overcome by thin film nanoengineering of the test case system, La0.9Ba0.1MnO3(LBMO). This was achieved by using vertically aligned nanocomposite (VAN) thin films of LBMO + CeO(2)in which CeO(2)nanocolumns form embedded in a LBMO matrix. The CeO(2)columns produce uniform tensile straining of the LBMO. Also light Ce doping of intrinsic cation vacancies in the LBMO occurs. Together, these factors strongly reduced the double exchange coupling and metallicity. Hence, while standard plain reference films showed an insulator-to-metal transition at >200 K, originating from defects and complex structural relaxation, the VAN LBMO films exhibited ferromagnetic insulating properties (while maintaining aT(c)of 188 K). This is the first time that a combined strain + doping method is used in a VAN system to realise exemplary properties which cannot be realised in plain films. This work represents an important step in engineering high performance spintronic and multiferroic thin film devices.
机译:亚锰酸盐有广泛强烈相关迷人的磁性和电子属性,一个例子是共存的铁磁和绝缘性能轻掺杂。电影翻译主要属性。问题是克服由薄膜纳米工程测试用例系统La0.9Ba0.1MnO3 (LBMO)。这是通过使用垂直对齐纳米复合材料(VAN)薄膜LBMO +(2)的首席执行官首席执行官(2)nanocolumns形式嵌入LBMO矩阵。LBMO的紧张。内在阳离子LBMO出现空缺。在一起,这些因素减少了双交换耦合和金属丰度。虽然标准参考电影展示了在> 200 K insulator-to-metal过渡,来自缺陷和复杂的结构放松,货车LBMO电影展出(当铁磁绝缘属性保持在188 K) (c),这是第一次应变+掺杂方法相结合范中使用系统来实现的不能意识到在普通属性电影。工程高性能自旋电子和由薄膜设备。

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