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Interface-Induced Polarization in SrTiO_3 -LaCrO_3 Superlattices

机译:SrTiO_3 -LaCrO_3超晶格中界面诱导的极化

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Epitaxial interfaces and superlattices comprised of polar and non-polar perovskite oxides have generated considerable interest because they possess a range of desirable properties for functional devices. In this work, emergent polarization in superlattices of SrTiO_3 (STO) and LaCrO_3 (LCO) is demonstrated. By controlling the interfaces between polar LCO and non-polar STO, polarization is induced throughout the STO layers of the superlattice. Using X-ray absorption near-edge spectroscopy and aberration-corrected scanning transmission electron microscopy displacements of the Ti cations off-center within TiO 6 octahedra along the superlattice growth direction are measured. This distortion gives rise to built-in potential gradients within the STO and LCO layers, as measured by in situ X-ray photoelectron spectroscopy. Density functional theory models explain the mechanisms underlying this behavior, revealing the existence of both an intrinsic polar distortion and a built-in electric field, which are due to alternately positively and negatively charged interfaces in the superlattice. This study paves the way for controllable polarization for carrier separation in multilayer materials and highlights the crucial role that interface structure plays in governing such behavior.
机译:由极性和非极性钙钛矿氧化物组成的外延界面和超晶格引起了人们的极大兴趣,因为它们具有功能器件所需的一系列性能。在这项工作中,SrTiO_3(STO)和LaCrO_3(LCO)的超晶格中出现了出射极化。通过控制极性LCO和非极性STO之间的界面,可在整个超晶格的STO层中感应极化。使用X射线吸收近边缘光谱和像差校正的扫描透射电子显微镜,测量TiO 6八面体中Ti阳离子沿超晶格生长方向的偏心位移。通过原位X射线光电子能谱测量,这种畸变会导致STO和LCO层内的内置电势梯度。密度泛函理论模型解释了此行为的机理,揭示了固有的极性畸变和内置电场的存在,这是由于超晶格中的带正电和负电的界面交替产生的。这项研究为多层材料中载流子分离的可控极化铺平了道路,并强调了界面结构在控制此类行为中的关键作用。

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