论文标题
在二维Hund的相关系统中调谐轨道选择相变
Tuning orbital-selective phase transitions in a two-dimensional Hund's correlated system
论文作者
论文摘要
Hund的规则耦合($ \ textit {j} $)最近引起了人们对多轨道材料新颖量子阶段的描述的作用的关注。根据轨道占用,$ \ textit {j} $可能导致各种有趣的阶段。但是,对于轨道占用依赖性的实验确认很困难,因为控制轨道自由度通常伴随化学不均匀性。在这里,我们展示了一种研究轨道占用率在$ \ textit {j} $相关现象中的作用而不引起不均匀性的方法。通过在各种基材上种植具有对称性的夹层的srruo $ _3 $单层,我们逐渐调整了晶体场拆分,因此,ru $ \ textit {t $ _2 $ _2 $ _2 $ _2 $ _ g $} $ orbitals的轨道退化。它有效地改变了二维(2D)鲜明情况的轨道占用。通过原位角度分辨光发射光谱,我们观察到了渐进式金属 - 绝缘体过渡(MIT)。发现MIT发生在轨道分化的情况下:在$ \ textit {d $ _x $ _x $ _ y $} $ band和$ \ textit {d $ _x $ _x $ _x $ _ z $ _ z $ _ z $ _/$ _ y $ _ $ $ _ $ _ z $ bands中的频段{D $ _x $ _ y $} $同时打开绝缘差距。我们的研究提供了一种有效的实验方法,用于研究多轨材料中轨道选择性现象。
Hund's rule coupling ($\textit{J}$) has attracted much attention recently for its role in the description of the novel quantum phases of multi orbital materials. Depending on the orbital occupancy, $\textit{J}$ can lead to various intriguing phases. However, experimental confirmation of the orbital occupancy dependency has been difficult as controlling the orbital degrees of freedom normally accompanies chemical inhomogeneities. Here, we demonstrate a method to investigate the role of orbital occupancy in $\textit{J}$ related phenomena without inducing inhomogeneities. By growing SrRuO$_3$ monolayers on various substrates with symmetry-preserving interlayers, we gradually tune the crystal field splitting and thus the orbital degeneracy of the Ru $\textit{t$_2$$_g$}$ orbitals. It effectively varies the orbital occupancies of two-dimensional (2D) ruthenates. Via in-situ angle-resolved photoemission spectroscopy, we observe a progressive metal-insulator transition (MIT). It is found that the MIT occurs with orbital differentiation: concurrent opening of a band insulating gap in the $\textit{d$_x$$_y$}$ band and a Mott gap in the $\textit{d$_x$$_z$$_/$$_y$$_z$}$ bands. Our study provides an effective experimental method for investigation of orbital-selective phenomena in multi-orbital materials.