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过渡金属二硫属化物中原子缺陷的电荷态依赖对称性破缺

Charge state-dependent symmetry breaking of atomic defects in transition metal dichalcogenides.

作者信息

Xiang Feifei, Huberich Lysander, Vargas Preston A, Torsi Riccardo, Allerbeck Jonas, Tan Anne Marie Z, Dong Chengye, Ruffieux Pascal, Fasel Roman, Gröning Oliver, Lin Yu-Chuan, Hennig Richard G, Robinson Joshua A, Schuler Bruno

机构信息

nanotech@surfaces Laboratory, Empa - Swiss Federal Laboratories for Materials Science and Technology, Dübendorf, 8600, Switzerland.

Department of Materials Science and Engineering, University of Florida, Gainesville, FL, 32611, USA.

出版信息

Nat Commun. 2024 Mar 28;15(1):2738. doi: 10.1038/s41467-024-47039-4.

Abstract

The functionality of atomic quantum emitters is intrinsically linked to their host lattice coordination. Structural distortions that spontaneously break the lattice symmetry strongly impact their optical emission properties and spin-photon interface. Here we report on the direct imaging of charge state-dependent symmetry breaking of two prototypical atomic quantum emitters in mono- and bilayer MoS by scanning tunneling microscopy (STM) and non-contact atomic force microscopy (nc-AFM). By changing the built-in substrate chemical potential, different charge states of sulfur vacancies (Vac) and substitutional rhenium dopants (Re) can be stabilized. Vac as well as Re and Re exhibit local lattice distortions and symmetry-broken defect orbitals attributed to a Jahn-Teller effect (JTE) and pseudo-JTE, respectively. By mapping the electronic and geometric structure of single point defects, we disentangle the effects of spatial averaging, charge multistability, configurational dynamics, and external perturbations that often mask the presence of local symmetry breaking.

摘要

原子量子发射器的功能与其主体晶格配位本质上相关联。自发打破晶格对称性的结构畸变会强烈影响其光发射特性和自旋 - 光子界面。在此,我们通过扫描隧道显微镜(STM)和非接触原子力显微镜(nc - AFM)报告了在单层和双层MoS₂中两个典型原子量子发射器的电荷态依赖对称性破缺的直接成像。通过改变内置衬底化学势,可以稳定硫空位(Vac)和替代铼掺杂剂(Re)的不同电荷态。Vac以及Re¹⁺和Re²⁺分别表现出归因于 Jahn - Teller效应(JTE)和赝JTE的局部晶格畸变和对称性破缺的缺陷轨道。通过绘制单点缺陷的电子和几何结构,我们厘清了常常掩盖局部对称性破缺存在的空间平均、电荷多稳定性、构型动力学和外部扰动的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c211/11258346/be254bdd357f/41467_2024_47039_Fig1_HTML.jpg

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