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Engineering Kitaev exchange in stacked iridate layers: impact of inter-layer species on in-plane magnetism

机译:堆叠的铱酸盐层中的工程Kitaev交换:层间物质对平面内磁性的影响

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摘要

Novel functionalities may be achieved in oxide electronics by appropriate stacking of planar oxide layers of different metallic species, MOp and M′Oq. The simplest mechanism allowing the tailoring of the electronic states and physical properties of such heterostructures is of electrostatic nature—charge imbalance between the M and M′ cations. Here we clarify the effect of interlayer electrostatics on the anisotropic Kitaev exchange in H3LiIr2O6, a recently proposed realization of the Kitaev spin liquid. By quantum chemical calculations, we show that the precise position of H+ cations between magnetically active [LiIr2O6]3– honeycomb-like layers has a strong impact on the magnitude of Kitaev interactions. In particular, it is found that stacking with straight interlayer O–H–O links is detrimental to in-plane Kitaev exchange since coordination by a single H-ion of the O ligand implies an axial Coulomb potential at the O site and unfavorable polarization of the O 2p orbitals mediating the Ir–Ir interactions. Our results therefore provide valuable guidelines for the rational design of Kitaev quantum magnets, indicating unprecedented Kitaev interactions of ≈40 meV if the linear interlayer linkage is removed.
机译:通过适当堆叠不同金属种类MOp和M'Oq的平面氧化物层,可以在氧化物电子学中实现新颖的功能。允许定制这种异质结构的电子状态和物理性质的最简单机制是静电性质的-M和M'阳离子之间的电荷不平衡。在这里,我们澄清了层间静电对H3LiIr2O6(最近提出的Kitaev自旋液体实现)中各向异性Kitaev交换的影响。通过量子化学计算,我们表明,H + 阳离子在磁性活性[LiIr2O6] 3 – 蜂窝状层之间的精确位置对Kitaev的大小有很大影响互动。特别是,发现具有直的层间OH-H链接的堆叠对平面内Kitaev交换是有害的,因为由O配体的单个H离子配位意味着在O位置处的轴向库仑电势和不利的极化介导Ir–Ir相互作用的O 2p轨道。因此,我们的结果为Kitaev量子磁体的合理设计提供了有价值的指导,表明如果去除线性层间键合,≈40meV的空前Kitaev相互作用。

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