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Symmetry mismatch-driven perpendicular magnetic anisotropy for perovskite/brownmillerite heterostructures

机译:钙钛矿/褐锰矿异质结构的对称失配驱动垂直磁各向异性

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摘要

Grouping different transition metal oxides together by interface engineering is an important route toward emergent phenomenon. While most of the previous works focused on the interface effects in perovskite/perovskite heterostructures, here we reported on a symmetry mismatch-driven spin reorientation toward perpendicular magnetic anisotropy in perovskite/brownmillerite heterostructures, which is scarcely seen in tensile perovskite/perovskite heterostructures. We show that alternately stacking perovskite La2/3Sr1/3MnO3 and brownmillerite LaCoO2.5 causes a strong interface reconstruction due to symmetry discontinuity at interface: neighboring MnO6 octahedra and CoO4 tetrahedra at the perovskite/brownmillerite interface cooperatively relax in a manner that is unavailable for perovskite/perovskite interface, leading to distinct orbital reconstructions and thus the perpendicular magnetic anisotropy. Moreover, the perpendicular magnetic anisotropy is robust, with an anisotropy constant two orders of magnitude greater than the in-plane anisotropy of the perovskite/perovskite interface. The present work demonstrates the great potential of symmetry engineering in designing artificial materials on demand.
机译:通过界面工程将不同的过渡金属氧化物组合在一起是一条通往出现现象的重要途径。尽管先前的大多数工作都集中在钙钛矿/钙钛矿异质结构的界面效应上,但在这里我们报道了钙钛矿/褐铁矿异质结构中对称失配驱动的自旋取向向垂直磁各向异性的方向,这在拉伸钙钛矿/钙钛矿异质结构中很少见。我们显示出交替堆叠钙钛矿La2 / 3Sr1 / 3MnO3和褐铁矿LaCoO2.5会由于界面处的对称不连续性而引起强烈的界面重建:钙钛矿/褐铁矿界面处的相邻MnO6八面体和CoO4四面体以一种钙钛矿无法利用的方式协同松弛/钙钛矿界面,导致明显的轨道重建,从而导致垂直磁各向异性。此外,垂直磁各向异性是鲁棒的,其各向异性常数比钙钛矿/钙钛矿界面的面内各向异性大两个数量级。本工作展示了对称工程在按需设计人造材料方面的巨大潜力。

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