Transport behaviors of topological band conduction in KTaO3’s two-dimensional electron gases

Abstract Two-dimensional electron gas systems (2DEGs) generated at the oxide interfaces that exhibit rich physics phenomena opened up an era for oxide-based electronics, photonics, and spintronics. The recent discovery of superconductivity plus the strong spin-orbital coupling naturally existing in...

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Bibliographic Details
Main Authors: Yuting Zou, Hyungki Shin, Haoran Wei, Yiyan Fan, Bruce A. Davidson, Er-Jia Guo, Qihong Chen, Ke Zou, Zhi Gang Cheng
Format: Article
Language:English
Published: Nature Portfolio 2022-12-01
Series:npj Quantum Materials
Online Access:https://doi.org/10.1038/s41535-022-00536-5
Description
Summary:Abstract Two-dimensional electron gas systems (2DEGs) generated at the oxide interfaces that exhibit rich physics phenomena opened up an era for oxide-based electronics, photonics, and spintronics. The recent discovery of superconductivity plus the strong spin-orbital coupling naturally existing in the 2DEGs of KTaO3 (KTO) made KTO an exciting platform for the interplay of the electronic and spin degrees of freedom to create exotic physical properties. By directly placing KTO’s 2DEGs next to another strongly-correlated oxide with nontrivial topological nodes, we reveal the anomalous effects which were induced by the topological states in the electronic transport properties of the KTO’s 2DGEs, due to the electronic reconstruction caused by the proximity effect. This adds an additional prospect to the functions of KTO heterostructures.
ISSN:2397-4648