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Electronic Structure Trends Across the Rare-Earth Series in Superconducting Infinite-Layer Nickelates

机译:超导无限层镍含有稀土系列的电子结构趋势

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The recent discovery of superconductivity in oxygen-reduced monovalent nickelates has raised a new platform for the study of unconventional superconductivity, with similarities to and differences from the cuprate high-temperature superconductors. In this paper, we investigate the family of infinite-layer nickelates R NiO 2 with rare-earth R spanning across the lanthanide series, introducing a new and nontrivial “knob” with which to tune nickelate superconductivity. When traversing from La to Lu, the out-of-plane lattice constant decreases dramatically with an accompanying increase of Ni d x 2 ? y 2 bandwidth; however, surprisingly, the role of oxygen charge transfer diminishes. In contrast, the magnetic exchange grows across the lanthanides, which may be favorable to superconductivity. Moreover, compensation effects from the itinerant 5 d electrons present a closer analogy to Kondo lattices, indicating a stronger interplay between charge transfer, bandwidth renormalization, compensation, and magnetic exchange. We also obtain the microscopic Hamiltonian using the Wannier downfolding technique, which will provide the starting point for further many-body theoretical studies.
机译:最近在氧气化的单价镍中发现超导性已经提高了对非常规超导性研究的新平台,具有与铜酸酯高温超导体的相似性和差异。在本文中,我们将无限层镍族R NiO 2的系列与稀土系列一起调查,横跨镧系元素系列,引入了一种新的和非旋转的“旋钮”,以调节镍酯超导。当从LA到Lu横穿时,平面外格晶格常数随着Ni D X 2的伴随的增加而急剧下降? y 2带宽;然而,令人惊讶的是,氧气电荷转移的作用减小。相反,磁交换在镧系中生长,这可能有利于超导性。此外,来自Inererant 5的补偿效应是对Kondo格子的较近比较的,表示电荷转移,带宽重整化,补偿和磁交换之间的更强的相互作用。我们还使用Wannier Downfolding技术获得微观哈密顿,这将为进一步的许多理论研究提供起点。

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