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Dimensionality-Controlled Insulator-Metal Transition and Correlated Metallic State in 5d Transition Metal Oxides Srn+1IrnO3n+1 (n=1, 2, and infinity)

机译:5d过渡金属氧化物Srn + 1IrnO3n + 1(n = 1、2和无穷大)中尺寸控制的绝缘体-金属过渡和相关的金属态

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摘要

We investigated the electronic structures of the 5d Ruddlesden-Popper series Srn+1IrnO3n+1 (n=1, 2, and ∞) using optical spectroscopy and first-principles calculations. As 5d orbitals are spatially more extended than 3d or 4d orbitals, it has been widely accepted that correlation effects are minimal in 5d compounds. However, we observed a Mott insulator-metal transition with a change of bandwidth as we increased n. In addition, the artificially synthesized perovskite SrIrO3 showed a very large mass enhancement of about 6, indicating that it was in a correlated metallic state.
机译:我们使用光谱学和第一性原理计算研究了5d Ruddlesden-Popper系列Srn + 1IrnO3n + 1(n = 1、2和∞)的电子结构。由于5d轨道在空间上比3d或4d轨道更宽,因此,人们普遍认为5d化合物的相关效应极小。但是,随着n的增加,我们观察到了莫特绝缘子-金属跃迁随带宽的变化。另外,人工合成的钙钛矿SrIrO3表现出非常大的质量增加,约为6,表明它处于相关的金属状态。

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