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Latent instabilities in metallic LaNiO3 films by strain control of Fermi-surface topology

机译:费米表面拓扑的应变控制在金属LaNiO3薄膜中的潜在不稳定性

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摘要

Strain control is one of the most promising avenues to search for new emergent phenomena in transition-metal-oxide films. Here, we investigate the strain-induced changes of electronic structures in strongly correlated LaNiO3 (LNO) films, using angle-resolved photoemission spectroscopy and the dynamical mean-field theory. The strongly renormalized eg-orbital bands are systematically rearranged by misfit strain to change its fermiology. As tensile strain increases, the hole pocket centered at the A point elongates along the kz-axis and seems to become open, thus changing Fermi-surface (FS) topology from three- to quasi-two-dimensional. Concomitantly, the FS shape becomes flattened to enhance FS nesting. A FS superstructure with Q1 = (1/2,1/2,1/2) appears in all LNO films, while a tensile-strained LNO film has an additional Q2 = (1/4,1/4,1/4) modulation, indicating that some instabilities are present in metallic LNO films. Charge disproportionation and spin-density-wave fluctuations observed in other nickelates might be their most probable origins.
机译:应变控制是在过渡金属氧化物薄膜中寻找新出现现象的最有希望的途径之一。在这里,我们使用角度分辨光发射光谱和动态平均场理论研究了强相关LaNiO3(LNO)薄膜中电子结构的应变诱导变化。高度重归一化的例如轨道带因失配应变而系统地重排,以改变其射线学。随着拉伸应变的增加,以A点为中心的孔穴会沿着kz轴延伸,并且似乎变得开放,从而将费米面(FS)拓扑结构从三维更改为准二维。随之,FS形状变平以增强FS嵌套。 Q1 =(1 / 2,1 / 2,1 / 2)的FS上层结构出现在所有LNO薄膜中,而拉伸应变的LNO薄膜具有额外的Q2 =(1 / 4,1 / 4,1 / 4)调制,表明在金属LNO膜中存在一些不稳定性。在其他镍酸盐中观察到的电荷歧化和自旋密度波波动可能是它们最可能的起源。

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