首页> 外文OA文献 >Depth-Resolved Composition and Electronic Structure of Buried Layers and Interfaces in a LaNiO$_{3}$/SrTiO$_{3}$ Superlattice from Soft- and Hard- X-ray Standing-Wave Angle-Resolved Photoemission
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Depth-Resolved Composition and Electronic Structure of Buried Layers and Interfaces in a LaNiO$_{3}$/SrTiO$_{3}$ Superlattice from Soft- and Hard- X-ray Standing-Wave Angle-Resolved Photoemission

机译:LaNiO $ _ {3} $ / SrTiO $ _ {3} $超晶格在软和硬X射线驻波角分辨光发射中的深度分辨成分和埋层和界面的电子结构

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摘要

LaNiO3 (LNO) is an intriguing member of the rare-earth nickelates in exhibiting a metal-insulator transition for a critical film thickness of about 4 unit cells [Son et al., Appl. Phys. Lett. 96, 062114 (2010)]; however, such thin films also show a transition to a metallic state in superlattices with SrTiO3 (STO) [Son et al., Appl. Phys. Lett. 97, 202109 (2010)]. In order to better understand this transition, we have studied a strained LNO/STO superlattice with 10 repeats of [4 unit-cell LNO/3 unit-cell STO] grown on an (LaAlO3)0.3(Sr2AlTaO6)0.7 substrate using soft x-ray standing-wave-excited angle-resolved photoemission (SWARPES), together with soft- and hard- x-ray photoemission measurements of core levels and densities-of-states valence spectra. The experimental results are compared with state-of-the-art density functional theory (DFT) calculations of band structures and densities of states. Using core-level rocking curves and x-ray optical modeling to assess the position of the standing wave, SWARPES measurements are carried out for various incidence angles and used to determine interface-specific changes in momentum-resolved electronic structure. We further show that the momentum-resolved behavior of the Ni 3d eg and t2g states near the Fermi level, as well as those at the bottom of the valence bands, is very similar to recently published SWARPES results for a related La0.7Sr0.3MnO3/SrTiO3 superlattice that was studied using the same technique (Gray et al., Europhysics Letters 104, 17004 (2013)), which further validates this experimental approach and our conclusions. Our conclusions are also supported in several ways by comparison to DFT calculations for the parent materials and the superlattice, including layer-resolved density-of-states results.
机译:LaNiO 3(LNO)是稀土镍酸盐的有趣成员,其对于约4个晶胞的临界膜厚度表现出金属-绝缘体转变[Son等人,Appl.Natl.Acad.Sci.USA,USA,Appl.Appl。物理来吧96,062114(2010)];然而,这种薄膜在具有SrTiO3(STO)的超晶格中也表现出向金属态的转变[Son et al。,Appl。物理来吧97,202109(2010)]。为了更好地理解这种过渡,我们研究了应变LNO / STO超晶格,该晶格具有10个重复的[4晶胞LNO / 3晶胞STO],该晶格生长在(LaAlO3)0.3(Sr2AlTaO6)0.7衬底上,使用软x-射线射线驻波激发的角度分辨光发射(SWARPES),以及对核心能级和态密度价谱的软X射线和硬X射线光发射测量。将实验结果与能带结构和状态密度的最新密度泛函理论(DFT)计算进行了比较。使用核心水平的摇摆曲线和X射线光学模型评估驻波的位置,对各种入射角进行SWARPES测量,并用于确定动量分辨电子结构中特定于界面的变化。我们进一步表明,在费米能级附近以及价带底部的Ni 3d eg和t2g态的动量分辨行为与相关La0.7Sr0.3MnO3的最近发表的SWARPES结果非常相似/ SrTiO3超晶格已使用相同的技术进行了研究(Gray等人,Europhysics Letters 104,17004(2013)),这进一步验证了该实验方法和我们的结论。与母体材料和超晶格的DF​​T计算相比,我们的结论也得到了多种支持,包括层解析态密度结果。

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