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在具有蜂窝晶格结构的\(t_{2g}^{5}\)体系中从准分子带绝缘体到相对论莫特绝缘体

From a Quasimolecular Band Insulator to a Relativistic Mott Insulator in t_{2g}^{5} Systems with a Honeycomb Lattice Structure.

作者信息

Kim Beom Hyun, Shirakawa Tomonori, Yunoki Seiji

机构信息

Computational Condensed Matter Physics Laboratory, RIKEN, Wako, Saitama 351-0198, Japan.

Interdisciplinary Theoretical Science (iTHES) Research Group, RIKEN, Wako, Saitama 351-0198, Japan.

出版信息

Phys Rev Lett. 2016 Oct 28;117(18):187201. doi: 10.1103/PhysRevLett.117.187201. Epub 2016 Oct 24.

Abstract

The t_{2g} orbitals of an edge-shared transition-metal oxide with a honeycomb lattice structure form dispersionless electronic bands when only hopping mediated by the edge-sharing oxygens is accessible. This is due to the formation of isolated quasimolecular orbitals (QMOs) in each hexagon, introduced recently by Mazin et al. [Phys. Rev. Lett. 109, 197201 (2012)], which stabilizes a band insulating phase for t_{2g}^{5} systems. However, with the help of the exact diagonalization method to treat the electron kinetics and correlations on an equal footing, we find that the QMOs are fragile against not only the spin-orbit coupling (SOC) but also the Coulomb repulsion. We show that the electronic phase of t_{2g}^{5} systems can vary from a quasimolecular band insulator to a relativistic J_{eff}=1/2 Mott insulator with increasing the SOC as well as the Coulomb repulsion. The different electronic phases manifest themselves in electronic excitations observed in optical conductivity and resonant inelastic x-ray scattering. Based on our calculations, we assert that the currently known Ru^{3+} and Ir^{4+} based honeycomb systems are far from the quasimolecular band insulator but rather the relativistic Mott insulator.

摘要

对于具有蜂窝晶格结构的边共享过渡金属氧化物,当仅存在由边共享氧介导的跃迁时,其(t_{2g})轨道形成无色散电子能带。这是由于每个六边形中形成了孤立的准分子轨道(QMOs),这是马津等人[《物理评论快报》109, 197201 (2012)]最近提出的,它使(t_{2g}^{5})系统稳定在能带绝缘相。然而,借助精确对角化方法在平等基础上处理电子动力学和关联,我们发现QMOs不仅对自旋轨道耦合(SOC)而且对库仑排斥都很脆弱。我们表明,随着SOC以及库仑排斥的增加,(t_{2g}^{5})系统的电子相可以从准分子能带绝缘体变化到相对论性(J_{eff}=1/2)莫特绝缘体。不同的电子相在光导率和共振非弹性X射线散射中观察到的电子激发中表现出来。基于我们的计算,我们断言目前已知的基于(Ru^{3 +})和(Ir^{4 +})的蜂窝系统远非准分子能带绝缘体,而是相对论性莫特绝缘体。

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