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Hidden peculiar magnetic anisotropy at the interface in a ferromagnetic perovskite-oxide heterostructure

机译:铁磁钙钛矿-氧化物异质结构中界面处的隐藏特殊磁各向异性

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摘要

Understanding and controlling the interfacial magnetic properties of ferromagnetic thin films are crucial for spintronic device applications. However, using conventional magnetometry, it is difficult to detect them separately from the bulk properties. Here, by utilizing tunneling anisotropic magnetoresistance in a single-barrier heterostructure composed of La0.6Sr0.4MnO3 (LSMO)/LaAlO3 (LAO)/Nb-doped SrTiO3 (001), we reveal the presence of a peculiar strong two-fold magnetic anisotropy (MA) along the [110]c direction at the LSMO/LAO interface, which is not observed in bulk LSMO. This MA shows unknown behavior that the easy magnetization axis rotates by 90° at an energy of 0.2 eV below the Fermi level in LSMO. We attribute this phenomenon to the transition between the e g and t 2g bands at the LSMO interface. Our finding and approach to understanding the energy dependence of the MA demonstrate a new possibility of efficient control of the interfacial magnetic properties by controlling the band structures of oxide heterostructures.
机译:了解和控制铁磁薄膜的界面磁性能对于自旋电子器件应用至关重要。但是,使用常规的磁力测定法,很难将其与整体性质分开检测。在这里,通过在由La0.6Sr0.4MnO3(LSMO)/ LaAlO3(LAO)/ Nb掺杂的SrTiO3(001)构成的单势垒异质结构中利用隧穿各向异性磁阻,我们揭示了奇特的强两倍磁各向异性的存在。 (MA)在LSMO / LAO界面沿[110] c方向移动,这在批量LSMO中未观察到。该MA表现出未知的行为,即易磁化轴在LSMO的费米能级以下0.2 eV的能量下旋转了90°。我们将此现象归因于LSMO接口处的e g和t 2g波段之间的过渡。我们的发现和理解MA的能量依赖性的方法证明了通过控制氧化物异质结构的能带结构来有效控制界面磁性能的新可能性。

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