An anisotropic van der Waals dielectric for symmetry engineering in functionalized heterointerfaces

Author:

Li ZeyaORCID,Huang JunweiORCID,Zhou LingORCID,Xu ZianORCID,Qin FengORCID,Chen Peng,Sun Xiaojun,Liu Gan,Sui Chengqi,Qiu Caiyu,Lu YangfanORCID,Gou HuiyangORCID,Xi XiaoxiangORCID,Ideue ToshiyaORCID,Tang PeizheORCID,Iwasa YoshihiroORCID,Yuan HongtaoORCID

Abstract

AbstractVan der Waals dielectrics are fundamental materials for condensed matter physics and advanced electronic applications. Most dielectrics host isotropic structures in crystalline or amorphous forms, and only a few studies have considered the role of anisotropic crystal symmetry in dielectrics as a delicate way to tune electronic properties of channel materials. Here, we demonstrate a layered anisotropic dielectric, SiP2, with non-symmorphic twofold-rotational C2 symmetry as a gate medium which can break the original threefold-rotational C3 symmetry of MoS2 to achieve unexpected linearly-polarized photoluminescence and anisotropic second harmonic generation at SiP2/MoS2 interfaces. In contrast to the isotropic behavior of pristine MoS2, a large conductance anisotropy with an anisotropy index up to 1000 can be achieved and modulated in SiP2-gated MoS2 transistors. Theoretical calculations reveal that the anisotropic moiré potential at such interfaces is responsible for the giant anisotropic conductance and optical response. Our results provide a strategy for generating exotic functionalities at dielectric/semiconductor interfaces via symmetry engineering.

Funder

MEXT | Japan Society for the Promotion of Science

JST FOREST

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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