论文标题

相关驱动的有机3D拓扑拓扑用相对论费米子

Correlation-driven organic 3D topological insulator with relativistic fermions

论文作者

Nomoto, Tetsuya, Imajo, Shusaku, Akutsu, Hiroki, Nakazawa, Yasuhiro, Kohama, Yoshimitsu

论文摘要

在现代凝结物理学中,探索强大电子相关引起的新的拓扑现象和功能一直是一个核心问题。一个例子是拓扑绝缘体(TI)及其由库仑排斥而不是自旋轨道耦合驱动的功能。在这里,我们报告了一个“相关驱动”的TI状态,该状态在有机零间隙系统$α$ - (BET)$ _ 2 $ i $ _3 $中实现。在低温下出现的表面金属状态表现出无间隙狄拉克半分化的特性运输特性,表明该化合物中存在拓扑表面状态。此外,我们观察到通过直流电流在TI状态和非平衡狄拉克半学状态之间的拓扑阶段切换,DC电流是相关驱动的Ti状态的独特功能。我们的发现表明,相关驱动的TI不仅是实用的电子设备,而且是发现新的拓扑现象和相的领域。

Exploring new topological phenomena and functionalities induced by strong electron correlation has been a central issue in modern condensed-matter physics. One example is a topological insulator (TI) state and its functionality driven by the Coulomb repulsion rather than a spin-orbit coupling. Here, we report a "correlation-driven" TI state realized in an organic zero-gap system $α$-(BETS)$_2$I$_3$. The surface metallic state that emerges at low temperatures exhibits characteristic transport properties of a gapless Dirac semimetal, evidencing the presence of a topological surface state in this compound. Moreover, we observe a topological phase switching between the TI state and non-equilibrium Dirac semimetal state by a dc current, which is a unique functionality of a correlation-driven TI state. Our findings demonstrate that correlation-driven TIs are promising candidates not only for practical electronic devices but also as a field for discovering new topological phenomena and phases.

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