The Key Role of Non-Local Screening in the Environment-Insensitive Exciton Fine Structures of Transition-Metal Dichalcogenide Monolayers

Author:

Li Wei-Hua1ORCID,Lin Jhen-Dong1ORCID,Lo Ping-Yuan1,Peng Guan-Hao1,Hei Ching-Yu1,Chen Shao-Yu23,Cheng Shun-Jen1ORCID

Affiliation:

1. Department of Electrophysics, National Yang Ming Chiao Tung University, Hsinchu 300, Taiwan

2. Center of Condensed Matter Sciences, National Taiwan University, Taipei 106, Taiwan

3. Center of Atomic Initiative for New Material, National Taiwan University, Taipei 106, Taiwan

Abstract

In this work, we present a comprehensive theoretical and computational investigation of exciton fine structures of WSe2-monolayers, one of the best-known two-dimensional (2D) transition-metal dichalcogenides (TMDs), in various dielectric-layered environments by solving the first-principles-based Bethe–Salpeter equation. While the physical and electronic properties of atomically thin nanomaterials are normally sensitive to the variation of the surrounding environment, our studies reveal that the influence of the dielectric environment on the exciton fine structures of TMD-MLs is surprisingly limited. We point out that the non-locality of Coulomb screening plays a key role in suppressing the dielectric environment factor and drastically shrinking the fine structure splittings between bright exciton (BX) states and various dark-exciton (DX) states of TMD-MLs. The intriguing non-locality of screening in 2D materials can be manifested by the measurable non-linear correlation between the BX-DX splittings and exciton-binding energies by varying the surrounding dielectric environments. The revealed environment-insensitive exciton fine structures of TMD-ML suggest the robustness of prospective dark-exciton-based optoelectronics against the inevitable variation of the inhomogeneous dielectric environment.

Funder

National Science and Technology Council of Taiwan

Center of Atomic Initiative for New Materials, National Taiwan University

Featured Areas Research Center Program within the framework of the Higher Education Sprout Project by the Ministry of Education of Taiwan

National Center for High-Performance Computing (NCHC), Taiwan

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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