论文标题

重建无限层镍酸盐薄膜的极性界面

Reconstructing the polar interface of infinite-layer nickelate thin films

论文作者

Goodge, Berit H., Geisler, Benjamin, Lee, Kyuho, Osada, Motoki, Wang, Bai Yang, Li, Danfeng, Hwang, Harold Y., Pentcheva, Rossitza, Kourkoutis, Lena F.

论文摘要

基于镍的超导体提供了一个期待已久的实验平台,以探索可能类似铜矿的超导性。尽管相似的晶体结构和$ d $电子填充,但这些系统表现出几种差异。镍是最极性层次的氧化物超导体,提出了有关底物和薄膜之间界面的问题 - 迄今为止,唯一成功稳定超导性的样品几何形状。我们对ND $ _ {1-X} $ sr $ _x $ nio $ _2 $和srtio $ _3 $之间的原型接口进行了详细的实验和理论研究。扫描传输电子显微镜中的原子分辨率电子损失光谱揭示了单个中间体ND(Ti,Ni)o $ _3 $ layer的形成。用哈伯德$ u $项计算密度功能理论,显示观察到的结构如何减轻强极性不连续性。我们探索氧气占用,孔掺杂和阳离子结构的影响,以解开每个占用的贡献,以降低界面电荷密度。解决非平凡界面结构将对其他底物和垂直异质结构中的镍薄膜的未来合成具有启发性。

Nickel-based superconductors provide a long-awaited experimental platform to explore possible cuprate-like superconductivity. Despite similar crystal structure and $d$ electron filling, these systems exhibit several differences. Nickelates are the most polar layered oxide superconductor, raising questions about the interface between substrate and thin film -- thus far the only sample geometry to successfully stabilize superconductivity. We conduct a detailed experimental and theoretical study of the prototypical interface between Nd$_{1-x}$Sr$_x$NiO$_2$ and SrTiO$_3$. Atomic-resolution electron energy loss spectroscopy in the scanning transmission electron microscope reveals the formation of a single intermediate Nd(Ti,Ni)O$_3$ layer. Density functional theory calculations with a Hubbard $U$ term show how the observed structure alleviates the strong polar discontinuity. We explore effects of oxygen occupancy, hole doping, and cation structure to disentangle the contributions of each for reducing interface charge density. Resolving the nontrivial interface structure will be instructive for future synthesis of nickelate films on other substrates and in vertical heterostructures.

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