论文标题

范德华界面的合成半学

Synthetic Semimetals with van der Waals Interfaces

论文作者

Reddy, Bojja Aditya, Ponomarev, Evgeniy, Gutiérrez-Lezama, Ignacio, Ubrig, Nicolas, Barreteau, Céline, Giannini, Enrico, Morpurgo, Alberto F.

论文摘要

适当设计的Van der Waals(VDW)异质结构的组装代表了一种新的方法,可以生产具有工程电子特性的人造系统。在这里,我们采用此策略来实现基于两个不同半导体形成的VDW界面的合成半学。在现有的AB-Initio计算的指导下,我们选择WSE $ _2 $和SNSE $ _2 $ MONO和MONERAYERS组装VDW接口,并通过不同的运输实验来证明半金属性的发生。半金属性在离子液体门控设备的大范围内扫地时,在有限的最小电导率中表现出来,这也提供了光谱功能,从而可以对带重叠的定量确定。半金属状态在Hall效应测量中还通过电子和孔的共存在Hall效应的测量中揭示,这是通过查看霍尔坡度的演变,并扫除栅极电压或降低温度。最后,半金属性导致两种材料的界面的低温金属电导率,它们本身是绝缘的。这些结果表明,实施在VDW界面中尚未实现的物质状态的可能性,并代表了使用这些接口来设计拓扑或激发剂绝缘状态的第一步。

The assembly of suitably designed van der Waals (vdW) heterostructures represents a new approach to produce artificial systems with engineered electronic properties. Here, we apply this strategy to realize synthetic semimetals based on vdW interfaces formed by two different semiconductors. Guided by existing ab-initio calculations, we select WSe$_2$ and SnSe$_2$ mono and multilayers to assemble vdW interfaces, and demonstrate the occurrence of semimetallicity by means of different transport experiments. Semimetallicity manifests itself in a finite minimum conductance upon sweeping the gate over a large range in ionic liquid gated devices, which also offer spectroscopic capabilities enabling the quantitative determination of the band overlap. The semimetallic state is additionally revealed in Hall effect measurements by the coexistence of electrons and holes, observed by either looking at the evolution of the Hall slope with sweeping the gate voltage or with lowering temperature. Finally, semimetallicity results in the low-temperature metallic conductivity of interfaces of two materials that are themselves insulating. These results demonstrate the possibility to implement a state of matter that had not yet been realized in vdW interfaces, and represent a first step towards using these interfaces to engineer topological or excitonic insulating states.

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