论文标题

在单原子层极限中,对费米液体,hund金属和莫特绝缘体相的杂质控制控制

Heteroepitaxial control of Fermi liquid, Hund metal, and Mott insulator phases in the single-atomic-layer limit

论文作者

Kim, Jeong Rae, Sohn, Byungmin, Lee, Hyeong Jun, Lee, Sangmin, Ko, Eun Kyo, Hahn, Sungsoo, Lee, Sangjae, Kim, Younsik, Kim, Donghan, Kim, Hong Joon, Kim, Youngdo, Son, Jaeseok, Ahn, Charles H., Walker, Frederick J., Go, Ara, Kim, Miyoung, Kim, Choong H., Kim, Changyoung, Noh, Tae Won

论文摘要

不同相关氧化物之间的接口可以提供具有多功能功能的设备。在这方面,高度需要操纵和测量氧化物异源的新物理特性。然而,尽管进行了广泛的研究,但直接获得有关其动量分辨的电子结构的信息仍然是一个巨大的挑战。这是因为大多数相关的界面现象出现在界面的几个原子层中,因此限制了可用的实验探针的应用。在这里,我们利用原子尺度的外观和光发射光谱来证明原子尺度刮酸酯 - 二硝酸盐异质结构中相关电子相的界面控制。虽然散装srruo $ _3 $是一种铁磁金属,但异质方面仅在单原子层限制中独家实现了三个不同的相关阶段。我们的理论表明,原子尺度的结构接近效应导致量子限制的srruo $ _3 $中的费米液体,hund金属和莫特绝缘子阶段的出现。这些结果突出了电子相的广泛的界面可调节性,迄今隐藏在原子薄相关的异质结构中。

Interfaces between dissimilar correlated oxides can offer devices with versatile functionalities. In that respect, manipulating and measuring novel physical properties of oxide heterointerfaces are highly desired. Yet, despite extensive studies, obtaining direct information on their momentum-resolved electronic structure remains a great challenge. This is because most correlated interfacial phenomena appear within a few atomic layers from the interface, thus limiting the application of available experimental probes. Here, we utilize atomic-scale epitaxy and photoemission spectroscopy to demonstrate the interface control of correlated electronic phases in atomic-scale ruthenate--titanate heterostructures. While bulk SrRuO$_3$ is a ferromagnetic metal, the heterointerfaces exclusively realize three distinct correlated phases in the single-atomic-layer limit. Our theory reveals that atomic-scale structural proximity effects lead to the emergence of Fermi liquid, Hund metal, and Mott insulator phases in the quantum-confined SrRuO$_3$. These results highlight the extensive interfacial tunability of electronic phases, hitherto hidden in the atomically thin correlated heterostructure.

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