Synthetic Semimetals with van der Waals Interfaces
arXiv:2001.09777 · doi:10.1021/acs.nanolett.9b04810
Abstract
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 and SnSe 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.
References in corpus (11)
- 2D materials and van der Waals heterostructures
- Atomically thin p-n junctions with van der Waals heterointerfaces
- Magnetic 2D materials and heterostructures
- Emergence of Superlattice Dirac Points in Graphene on Hexagonal Boron Nitride
- Quantitative Determination of the Band-Gap of WS2 with Ambipolar Ionic Liquid-Gated Transistors
- Mono- and Bilayer WS2 Light-Emitting Transistors
- Interlayer Exciton Optoelectronics in a 2D Heterostructure p-n Junction
- Spin-orbit driven band inversion in bilayer graphene by van der Waals proximity effect
- A quantum phase transition from triangular to stripe charge order in NbSe
- Quantum Hall Effect Measurement of Spin-Orbit Coupling Strengths in Ultraclean Bilayer Graphene/WSe2 Heterostructures
- Band filling and cross quantum capacitance in ion gated semiconducting transition metal dichalcogenide monolayers