激子
光致发光
材料科学
比克西顿
单层
光谱学
自发辐射
分子物理学
凝聚态物理
光电子学
纳米技术
物理
光学
激光器
量子力学
作者
Kathryn Hasz,Zuocheng Hu,Kyoung‐Duck Park,Markus B. Raschke
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-12-20
卷期号:23 (1): 198-204
被引量:27
标识
DOI:10.1021/acs.nanolett.2c03959
摘要
Dark excitons in transition-metal dichalcogenides, with their long lifetimes and strong binding energies, provide potential platforms from photonic and optoelectronic applications to quantum information science even at room temperature. However, their spatial heterogeneity and sensitivity to strain is not yet understood. Here, we combine tip-enhanced photoluminescence spectroscopy with atomic force induced strain control to nanoimage dark excitons in WSe2 and their response to local strain. Dark exciton emission is facilitated by out-of-plane picocavity Purcell enhancement giving rise to spatially highly localized emission, providing for higher spatial resolution compared to bright exciton nanoimaging. Further, tip-antenna-induced dark exciton emission is enhanced in areas of higher strain associated with bubbles. In addition, active force control shows dark exciton emission to be more sensitive to strain with both compressive and tensile lattice deformation facilitating emission. This interplay between localized strain and Purcell effects provides novel pathways for nanomechanical exciton emission control.
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