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Recent progress on correlated electron systems with strong spin-orbit coupling

机译:具有强自旋轨道耦合的相关电子系统的最新进展

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The emergence of novel quantum ground states in correlated electron systems with strong spin-orbit coupling has been a recent subject of intensive studies. While it has been realized that spin-orbit coupling can provide non-trivial band topology in weakly interacting electron systems, as in topological insulators and semi-metals, the role of electron-electron interaction in strongly spin-orbit coupled systems has not been fully understood. The availability of new materials with significant electron correlation and strong spin-orbit coupling now makes such investigations possible. Many of these materials contain 5d or 4d transition metal elements; the prominent examples are iridium oxides or iridates. In this review, we succinctly discuss recent theoretical and experimental progress on this subject. After providing a brief overview, we focus on pyrochlore iridates and three-dimensional honeycomb iridates. In pyrochlore iridates, we discuss the quantum criticality of the bulk and surface states, and the relevance of the surface/boundary states in a number of topological and magnetic ground states, both in the bulk and thin film configurations. Experimental signatures of these boundary and bulk states are discussed. Domain wall formation and strongly-direction-dependent magneto-transport are also discussed. In regard to the three-dimensional honeycomb iridates, we consider possible quantum spin liquid phases and unusual magnetic orders in theoretical models with strongly bond-dependent interactions. These theoretical ideas and results are discussed in light of recent resonant x-ray scattering experiments on three-dimensional honeycomb iridates. We also contrast these results with the situation in two-dimensional honeycomb iridates. We conclude with the outlook on other related systems.
机译:在具有强自旋-轨道耦合的相关电子系统中,新型量子基态的出现已成为近期研究的主题。尽管已经认识到,自旋轨道耦合可以在弱相互作用的电子系统中提供非平常的带拓扑,例如在拓扑绝缘体和半金属中,但电子-电子相互作用在强自旋轨道耦合系统中的作用还没有完全发挥出来。了解。具有重要的电子相关性和强自旋轨道耦合的新材料的可用性现在使这种研究成为可能。这些材料中许多都包含5d或4d过渡金属元素。突出的例子是氧化铱或铱酸盐。在这篇综述中,我们简要讨论了有关该主题的最新理论和实验进展。在提供简要概述之后,我们将重点介绍烧绿石铱酸盐和三维蜂窝状铱酸盐。在烧绿石的铱酸盐中,我们讨论了本体态和薄膜态的体态和表面态的量子临界性,以及许多拓扑和磁性基态中表面/边界态的相关性。讨论了这些边界态和本体态的实验特征。还讨论了畴壁的形成和强方向相关的磁传输。关于三维蜂窝状铱酸盐,我们考虑在具有强键依赖性相互作用的理论模型中可能的量子自旋液相和异常的磁序。这些理论思想和结果根据最近对三维蜂窝状铱酸盐的共振X射线散射实验进行了讨论。我们还将这些结果与二维蜂窝状铱酸盐的情况进行对比。我们以对其他相关系统的展望作为结束。

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